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1 ombination of a driving field and its second harmonic.
2 optimal integration of information from each harmonic.
3 ut also by other parameters such as power at harmonics.
4 upling with the first-order, in-plane, Bragg harmonics.
5 ignal's fundamental frequency to that of its harmonics.
6 cilitates spectral analysis in terms of time-harmonics.
7 ginary components in each of the 4th to 12th harmonics after quantifying the charging current data us
8  other spectroscopy approaches which require harmonic analysis for data processing.
9 of those angles in predictive models, using "harmonic analysis." We applied harmonic Cox regression t
10                          Thermal motions are harmonic and independent of hydration level below Tlow a
11 ion of internal protein dynamics using quasi-harmonic and order parameter analyses indicates that cha
12                                    The quasi-harmonic and principal component analyses of simulations
13 tions regarding the interpretation of second harmonic and vibrational sum frequency generation respon
14                                We use second harmonic and vibrational sum frequency generation spectr
15 n of the faradaic signal in the higher order harmonics and the fact that a single electrochemical exp
16 solutions of 36900 (fundamental), 75850 (2nd harmonic), and 108200 (3rd harmonic) were obtained for G
17 c anisotropic magnetoresistance (AMR) with a harmonic angular dependence on the writing magnetic fiel
18 ctional perturbation combined with the quasi-harmonic approximation and the Klemens' equation is impl
19                                              Harmonics are acoustically predictable, and thus form th
20                                        These harmonics are associated with a distribution of periodic
21 imately 58 kHz and a more than 100(th)-order harmonics are obtained, with which the free-running freq
22 e study of near- and below- threshold regime harmonics as a potential source of intense coherent vacu
23 terrogator, then converts such signal to its harmonic band and re-radiates through the antenna sensor
24 ming one-dimensional diffusive motion over a harmonic barrier.
25 Gaussian-Schell model, the properties of the harmonic beam in the plane of generation are deduced.
26 h characterize the spatial coherence of high-harmonic beams and understand the processes which limit
27 ed to suggest ways in which the coherence of harmonic beams could be increased further, which would h
28 ately 160 K, above which all powders exhibit harmonic behavior but with a different and enhanced temp
29 lters the energy and the power of individual harmonic brain states in a frequency-selective manner.
30    Here, the authors demonstrate that higher harmonics can be generated from amorphous solids.
31                                       Higher harmonics can be used to increase the effective mass res
32 de transducer successfully attenuates second harmonics caused by the ultrasonic equipment, thus demon
33               The perception of the pitch of harmonic complex sounds is a crucial function of human a
34 these neurons show nonlinear facilitation to harmonic complex sounds over inharmonic sounds, selectiv
35                   They responded robustly to harmonic complex tones and exhibited an increase in firi
36 oor, but when the tones were combined into a harmonic complex, a dramatic improvement in discriminati
37  observed FT spectrum into a distribution of harmonic components bound to a fixed frequency grid, whi
38 ntrol sounds, vocal sounds may have stronger harmonic content or greater spectrotemporal complexity.
39 riations than expected, indicative of a rich harmonic content.
40                          However, high-order harmonic conversion is typically much less efficient tha
41 odels, using "harmonic analysis." We applied harmonic Cox regression to model confounder-adjusted eff
42  typically described in terms of a spherical harmonic decomposition with Mie theory.
43                     Here we used 'connectome-harmonic decomposition', a novel method to investigate t
44  the seemingly chaotic responses form into a harmonic defense.
45 velength modulation spectroscopy with second-harmonic detection (2f-WMS) is performed and discussed i
46 atic nucleus neurones but does not block the harmonic discharge patterning.
47 rat suprachiasmatic nucleus discharge with a harmonic distribution of interspike intervals, whereas u
48 e in strain wave gears (SWGs), also known as harmonic drives, is presented.
49 ated with the amplitude of stimulation power harmonics during the amplitude-adapted pulse train.
50 nds of the CH3NH3(+) ion are consistent with harmonic expectations, the OH stretching bands of H3O(+)
51 trated, this includes the generation of high harmonics extending into the vacuum-ultraviolet and extr
52 contrast-reversing gratings and at the first harmonic (F1) to low-spatial frequency drifting gratings
53 cortical Y cells: they respond at the second harmonic (F2) to high-spatial frequency contrast-reversi
54 nt in order to create material-based tunable harmonic filters.
55 ets, which support bosonic magnons-quantized harmonic fluctuations of the ordered spins.
56 y stop-bands filtering out fictitious second harmonic frequencies.
57 fundamental frequency (omega) and the second-harmonic frequency (2omega) of a femtosecond (fs) Ti:sap
58                     Here we investigate high harmonics from semiconductors with controllable induced
59 distinct geometrical state, characterised by harmonic functions.
60 paper, we theoretically show that the higher harmonic gamma-ray produced by nonlinear inverse Thomson
61         Approaching the Dirac point, the sub-harmonic gap structures due to multiple Andreev reflecti
62                                      For any harmonic gauge, however, the stress tensor found is mani
63                                       In any harmonic gauge, the form of the tensor leads directly to
64  role of long-range periodicity by comparing harmonics generated from fused silica and crystalline qu
65 t occur via virtual energy states, including harmonic generation (HG).
66 ocesses play an important role in high-order harmonic generation (HHG) in an intense laser field.
67                                         High harmonic generation (HHG) is an established means of pro
68                            Laser-driven high harmonic generation (HHG) sources allow for lab scale ap
69 iral nonpolar acentric material shows second-harmonic generation (SHG) activity at both 1064 and 532
70 approach is developed for quantifying second harmonic generation (SHG) activity of powders that large
71 ealthy and infarcted myocardium using second harmonic generation (SHG) and two photon excited autoflu
72 gCO3F (Cs9Mg6(CO3)8F5) exhibits second-order harmonic generation (SHG) at both 1064 and 532 nm incide
73         In this study, a custom-built second harmonic generation (SHG) confocal microscope was used t
74        Major attention is paid to the second harmonic generation (SHG) effect.
75 avelength-dependence of epi-generated second harmonic generation (SHG) excitation efficiency, and dis
76 hoton excited fluorescence (TPEF) and second-harmonic generation (SHG) from biological and inorganic
77 as using multiphoton fluorescence and second harmonic generation (SHG) imaging.
78                                       Second Harmonic Generation (SHG) is a label-free imaging method
79 erization of these compounds includes second harmonic generation (SHG) measurements, theoretical calc
80    RDT preparations were imaged using second-harmonic generation (SHG) microscopy for both collagen a
81 e fibrillar morphology observed in 3D Second Harmonic Generation (SHG) microscopy image data of norma
82 mined by Picrosirius Red staining and Second Harmonic Generation (SHG) Microscopy.
83                                       Second-harmonic generation (SHG) originates from the interactio
84 be well explored for luminescence and second-harmonic generation (SHG) phenomena; these have been cov
85  The chiral material exhibits a large second harmonic generation (SHG) response of 13.5 x KDP (600 x
86  xerogels which display a spontaneous second harmonic generation (SHG) response without any need for
87                                       Second harmonic generation (SHG) was integrated with Raman spec
88                        In this study, second-harmonic generation (SHG) was used to study RNA and DNA
89                                       Second harmonic generation 2-photon fluorescence imaging is wid
90                            Multimodal second harmonic generation 2-photon fluorescence microscopy ena
91     This effect, concomitantly determined by harmonic generation and charge-mobility reduction, is ex
92 ic stacking that gives rise to strong second-harmonic generation and enhanced photoluminescence, plat
93 nm), enabling plasmonically enhanced surface harmonic generation and frequency mixing across a broad
94  the existence of vertical dipoles by second harmonic generation and piezoresponse force microscopy m
95 ed attosecond pulses are produced using high harmonic generation and sources of these pulses often su
96 entations from polarization-dependent second harmonic generation and sum frequency generation microsc
97 ear-unity circular dichroism for both second-harmonic generation and third-harmonic generations is de
98                                 First second harmonic generation and two-photon excitation microscopy
99 ical origin of the below- and near-threshold harmonic generation and various quantum trajectories for
100 anging from white-light generation to second-harmonic generation as well as controlling the white-lig
101 vskites to exhibit four times stronger third harmonic generation at mid-infrared when compared with t
102 re, we report a strong enhancement of second harmonic generation based on a three-layered super absor
103       Our results pave the way for efficient harmonic generation based on layered materials for appli
104 ch as ion acceleration and solid target high harmonic generation because they greatly improve pulse c
105 he device conversion efficiency of the third-harmonic generation by greater than three orders of magn
106 we demonstrate for the first time how second harmonic generation circular dichroism in such extrinsic
107  coupling in Mn2MnWO6 is evidenced by second harmonic generation effect, and corroborated by magnetic
108                                    The third harmonic generation efficiency for 1L-MoS2 is approximat
109  can be used for polarization-gating of high-harmonic generation for production of attosecond pulses.
110 ser was used to simultaneously excite second harmonic generation from A-bands of myofibrils and 2-pho
111       Here we report the observation of high-harmonic generation from amorphous fused silica.
112                                         High-harmonic generation from gases produces attosecond burst
113 me ultraviolet light sources.Although higher harmonic generation from solids has become of interest i
114                               Recently, high-harmonic generation from solids has been reported, resul
115                               Recently, high-harmonic generation has been observed in solids, which c
116 tructure via atomic force microscopy, second harmonic generation imaging and scanning electron micros
117 llagen remodeling was monitored using second harmonic generation imaging under normal conditions and
118 istribution of collagen determined by second harmonic generation imaging.
119 unable diffraction-free array through second-harmonic generation in a nonlinear photonic crystal, i.e
120         In this paper, we investigate second harmonic generation in a single hexagonal GaAs nanowire.
121                                         High-harmonic generation in isolated atoms and molecules has
122 econd excitation, we numerically investigate harmonic generation in metallic Archimedean nanospirals,
123 f the strong-field processes leading to high-harmonic generation in solids with implications for the
124 metric amplifier and its application to high-harmonic generation in solids.
125                             Efficient second harmonic generation in the metasurface-based devices is
126   Here we report a direct comparison of high harmonic generation in the solid and gas phases of argon
127 red sub-cycle pulse is used for driving high-harmonic generation in thin silicon samples, producing h
128 s meet the requirements for efficient second harmonic generation including lack of center of inversio
129  applications such as microscopy and imaging.Harmonic generation is a nonlinear optical process occur
130                                       Second harmonic generation is one of the most sensitive and rel
131                                         High harmonic generation is shown to occur fundamentally diff
132                Polarization-dependent second harmonic generation measurement was performed on Z-cut q
133                               Deep UV second harmonic generation measurements of the SCN(-) ion, a pr
134 ctric behavior, is demonstrated using second harmonic generation measurements.
135 o Raman and photoluminescence imaging, third-harmonic generation microscopy provides excellent sensit
136 ance and fluorescence features, second-order harmonic generation microscopy, and femtosecond transien
137 hoton autofluorescence microscopy and second harmonic generation microscopy.
138 sing multiphoton autofluorescence and second harmonic generation microscopy.
139 rium exchange experiments confirm the second harmonic generation observations and reveal allosteric c
140 antum study of the below- and near-threshold harmonic generation of molecules in an intense 800-nm ne
141 tally demonstrate phase-matching-free second harmonic generation over many coherent lengths in thin f
142 al electrical stimuli through optical second harmonic generation polarimetry and in situ TEM electric
143 f 627.5 %/W has been obtained for the second harmonic generation process.
144 ajectories of the below- and near- threshold harmonic generation processes.
145 metry reduction results in an optical second harmonic generation response that is over 550% higher at
146 DT lumen appeared as scleral collagen second harmonic generation signal voids that could be traced ba
147                        We find that the high harmonic generation spectra from the rare-gas solids exh
148 er molecules at charged interfaces by second harmonic generation spectroscopy has been heretofore lim
149                       We also combine second-harmonic generation spectroscopy with polarization-resol
150 r two-photon-excited fluorescence and second-harmonic generation that allows straightforward implemen
151 e interfacial nonlinearity probed via second harmonic generation that is sufficient to achieve d33>10
152 r both fundamental excitation wavelength and harmonic generation wavelength simultaneously.
153 carried independently by the fundamental and harmonic generation waves of different spins.
154                       Using transient second-harmonic generation, a technique capable of independentl
155 a biological macromolecule capable of second harmonic generation, allowing label-free detection in ti
156         Nonlinear optical processes, such as harmonic generation, are of great interest for various a
157  We also succeeded in detecting clear second harmonic generation, direct evidence for the material's
158 broadband soft X-ray pulses produced by high harmonic generation, in combination with time-dependent
159 on X-ray and neutron diffraction, and second harmonic generation, leads to a transition from a Ni3 Te
160 ls for nonlinear applications such as higher harmonic generation, optical limiting, and ultrafast mod
161 frequency doubling (SHG) and tripling (third-harmonic generation, THG) in these materials.
162                        Using magnetic second-harmonic generation, we directly probe both the in-plane
163    Using an optical approach based on second harmonic generation, we show that monomeric and dimeric
164 he dynamics can be probed through high-order harmonic generation, where different trajectories leadin
165 enefits from the label-free nature of second harmonic generation, which allows A-bands to be imaged i
166  as electromagnetic-induced transparency and harmonic generation.
167 pattern demonstrates strong second and third-harmonic-generation signals, which exceed those reported
168 or both second-harmonic generation and third-harmonic generations is demonstrated on suitably designe
169 nced light-matter interaction, especially in harmonic generations.
170  SOT through spin Hall magnetoresistance and harmonic Hall measurements, respectively, indicating con
171 try and comprehensive analysis of the higher harmonics has enabled us to access the redox processes r
172                                         High-harmonic (HH) generation in crystalline solids1-6 marks
173  spectral similarity of tone combinations to harmonic human vocalizations.
174 ssociated with grain boundaries in the third-harmonic imaging is considerably enhanced by the solvent
175 Enhanced image contrast in biological second harmonic imaging microscopy (SHIM) has previously been r
176 ADH and kidney fibrosis determined by second harmonic imaging microscopy.
177 ferrets to detect the presence of a mistuned harmonic in a complex tone using a positive conditioned
178 nic is thirty times stronger than the second-harmonic in monolayer MoS2.
179      The explicit role of the power in these harmonics in determining the outcome of stimulation has
180 first demonstration that power at high order harmonics in the frequency spectrum of electrical stimul
181    We demonstrate a five times larger second-harmonic intensity from the MSM metamaterial, compared t
182 ities in monolayer MoS2 (1L-MoS2): the third harmonic is 30 times stronger than the second, and the f
183      Here, the authors report that the third-harmonic is thirty times stronger than the second-harmon
184 covered that information from the individual harmonics is combined so efficiently that performance ex
185 lts in the emergence of fractional nonlinear harmonics leading to broadband coherent white-light gene
186  were nearly baseline, resolved at the third harmonic (mass resolution approximately 23000) with a tr
187                               The F-measure, harmonic mean of recall and precision, of the framework
188  atomic limit of the corresponding gas-phase harmonics measured under similar conditions.
189 ing generation of temporal patterns and high-harmonic mode-locking in a fibre laser.
190 localized scales, no previous study has used harmonic models to compare seasonality of mosquito-borne
191 hnique with a single nanopipette probe, with harmonic modulation of a bias applied between quasi-refe
192 in a distributed system is its response to a harmonic modulation.
193  Here we demonstrate for the first time that harmonic nanomechanical resonators with relatively high
194 nd two-tone combinations, and sensitivity to harmonic number and spectral regularity.
195 cages, which absorb strongly near the second harmonic of an Nd:YAG laser (532 nm), hold promise for m
196 ction chamber's horizontal-plane fundamental harmonics of 76 and 101 MHz.
197  used to calculate k(0) from analysis of the harmonics of the higher-frequency data set, where the ta
198                Here, we report excitation of harmonics of vibration modes of solvent molecules by fem
199 ore Cd2Re2O7 using spatially resolved second-harmonic optical anisotropy measurements.
200 asmas has been shown to produce coherent sub-harmonic optical waveforms, covering from terahertz (THz
201 uperposition of a fundamental and its second harmonic optimized such that highest harmonic yields are
202 e sought to explore the relationship between harmonic order and mass resolution.
203 e different trajectories leading to the same harmonic order are initiated at different times, thereby
204  its high-order harmonics, showing that each harmonic order carries the total number of OAM units abs
205  fwhm) is observed to linearly increase with harmonic order in a Fourier transform electrostatic line
206                           The variation with harmonic order of the intensity profile, wavefront curva
207 he mass resolution was truly increasing with harmonic order, the unresolved isotopes at the fundament
208 ing frequency to form a comb of even and odd harmonic orders.
209  boundaries, the isotropic three-dimensional harmonic oscillator and the 3-sphere.
210               When comparing the AI with the harmonic oscillator model of AI, the latter is found to
211 D), isochemical shielding surfaces (ICSSzz), harmonic oscillator model of aromaticity (HOMA), MCBO, S
212 ation for a micron-sized sphere trapped in a harmonic oscillator potential.
213 tates of a single trapped atom's motion in a harmonic oscillator using ultrafast laser pulses.
214    A drumming woodpecker may be modeled as a harmonic oscillator with a periodic forcing function.
215 lus woodpeckers may be modeled in terms of a harmonic oscillator with an impulsive forcing, and this
216  states larger than previously achieved in a harmonic oscillator, and create complex multi-component
217 of distinct coherent states in a single-mode harmonic oscillator, known as "cat states," have been an
218 valent to designing controls to steer linear harmonic oscillators under optimal forcing.
219 ach linearly coupled to dissipative baths of harmonic oscillators, has become the workhorse of this f
220 greater frequency extents when the number of harmonic overtones per formant is low, suggesting that t
221  therefore, low spectral density (i.e., less harmonic overtones).
222 However, the dynamical origin of these lower harmonics, particularly for the molecular systems, is le
223                                         This harmonic patterning has a fundamental frequency of close
224 f crystalline solids can be understood using harmonic perturbations around a perfect lattice, as in D
225 hrony with parameters derived from the first harmonic phase (O) analysis of the ERNA time-activity cu
226               This state, labelled here the 'harmonic phase', is shown to occur experimentally in spi
227 ean wall shear stress and of the gradient of harmonic phase-averaged shear stresses, which surprising
228                            However, ordinary harmonic phonons should only carry crystal momentum and,
229 ht field is a process which generates higher harmonic photons.
230          The Brownian motion of domains in a harmonic potential is the appropriate model to examine f
231 le the recording of subtle deviations from a harmonic potential to accurately reconstruct interfacial
232 l with Brownian motion of the fragments in a harmonic potential.
233  in particular a phonon of ionic motion in a harmonic potential.
234  an onset approximately 400 cm(-1) below the harmonic prediction.
235   Our study provides distinct control of the harmonic process from semiconductors, sheds light on the
236  underlying mechanism and helps optimize the harmonic properties for future solid-state attosecond li
237 ion diffraction grating (PDG) and an encoded harmonic q-plate grating (QPG).
238 acked bumblebee foragers continuously, using harmonic radar, and examined the process of route format
239 linear Yagi-Uda nanoantenna to direct second harmonic radiation from a metallic nanosphere.
240 ar- and far-field spatial properties of high-harmonic radiation generated in a gas cell.
241  destructive interference between the second harmonic radiation governed by a special selection rule
242 a compact director and reflector, the second harmonic radiation is deflected 90 degrees with referenc
243 ld have direct benefits to imaging with high-harmonic radiation.
244  a periodic array of magnetic addresses, the harmonic ratio contains the information necessary to det
245           Our approach is leveraged from the harmonic ratio method (HRM), a method used in the hard d
246  pattern of prescribing by fitting a dynamic harmonic regression (DHR) model to salbutamol prescribin
247                                      Dynamic Harmonic Regression modelling indicates that changes in
248                               We fit Poisson harmonic regression models to surveillance data on RRV,
249 residents of Boston area were examined using harmonic regression models, designed to capture the non-
250 nna matrices and the spin-enabled asymmetric harmonic response to achieve helicity-controlled multipl
251                      We have developed third-harmonic scattering (THS) as an alternative method to me
252 rational sum frequency scattering and second harmonic scattering, label-free methods, specifically se
253  small-integer frequency ratios based on the harmonic series are related to the quality of the singer
254 o small-integer proportions derived from the harmonic series.
255 ng to the (erroneous) hypothesis that second harmonic (SH) generation is negligible in highly symmetr
256 ed helically phased beam into its high-order harmonics, showing that each harmonic order carries the
257 ency and dissipation data for the first four harmonics, shows good agreement for the supersaturations
258                 Deep-ultraviolet (UV) second-harmonics (SHs) have important applications in basic phy
259                                          The harmonic signal is picked up by a sniffer receiver and d
260 ed peak in intensity of the generated second harmonic signal versus the thickness of Indium Selenide
261 om the polarization dependence of the second harmonic signal.
262 n rate and capability of seeding with a high harmonic source opens a route for higher performance nan
263 Here we apply wave mixing to a tabletop high-harmonic source, as proposed in our previous work, and c
264 esults show that the order-dependence of the harmonic spatial coherence is consistent with partial co
265 nd capable of high-throughput acquisition of harmonic spectra (100 different drive-field frequencies
266 dentified by monitoring the variation of the harmonic spectra with the carrier density.
267                                Moreover, the harmonic spectral dependence on the driving wavelength i
268  produces attosecond bursts and enables high-harmonic spectroscopy to explore electron dynamics in at
269 ttached to the nuclei of their core atoms by harmonic springs.
270 cs manifest as the development of a chain of harmonics statistically phase coupled to the theta oscil
271                         The preserved single-harmonic structure ensures efficiency of lasing in the e
272  differ in their voice pitch, perceiving the harmonic structure of sounds is very important for audit
273 s changes the pitch but preserves the single-harmonic structure.
274 nharmonic sounds, selectivity for particular harmonic structures beyond two-tone combinations, and se
275             How the auditory system extracts harmonic structures embedded in complex sounds and uses
276     Despite the prevalence of sounds rich in harmonic structures in our everyday hearing environment,
277  an important role in processing sounds with harmonic structures, such as animal vocalizations, human
278  genetic level is insufficient for attaining harmonic system function, posttranslational regulatory m
279                Our findings suggest that the harmonic template neurons in auditory cortex may play an
280  this study, we discovered a unique class of harmonic template neurons in the core region of auditory
281  amplification systems generating fictitious harmonics that are difficult to discern from pure nonlin
282  the launched beam and also the higher-order harmonics that were not reported previously can become i
283 e notes of musical instruments with balanced harmonic-to-noise ratios and pitches.
284 ch-responsive regions in normal individuals: harmonic tones versus frequency-matched noise.
285  introduce a novel approach based on passive harmonic transponder antenna sensor and frequency hoppin
286         In our conceptual demonstration, the harmonic transponder comprises of a passive nonlinear fr
287                      The concepts of passive harmonic transponder sensor, metamaterial-inspired anten
288 te-size checkerboard-lattice cylinder with a harmonic trap potential has been further investigated.
289                            We develop a near-harmonic trap to demonstrate the crossover from weak con
290 eneration in thin silicon samples, producing harmonics up to 19th order with a continuous spectral c
291                In such a crystal, the second-harmonic wave is engineered by properly designing the do
292 al and spatial isolation of scattered second harmonic waves from incident fundamental waves pave a ne
293 llipticity dependence of the long trajectory harmonics we must include a sub-cycle change of the init
294 hree trapped ions in individually controlled harmonic wells forming equilateral triangles with side l
295 ntal), 75850 (2nd harmonic), and 108200 (3rd harmonic) were obtained for GdO(+) (avg.
296 long trajectory contribution of a particular harmonic when a window resonance in argon, which is off-
297 veguide such that bright coherent high-order harmonics with angular divergence smaller than 1 mrad ar
298 rmal ability of ferrets to detect a mistuned harmonic within a complex sound.
299  compare the dependence of the solid and gas harmonic yield on laser ellipticity and find that they a
300  second harmonic optimized such that highest harmonic yields are emitted from each atom.

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