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1 ing, endogenous two-photon fluorescence, and second harmonic generation).
2 r use for tunable, low power continuous wave second harmonic generation.
3 and non-centrosymmetry confirmed directly by second harmonic generation.
4 er than a nonlinear optical process, such as second harmonic generation.
5 ve multimodal imaging technique: multiphoton-second harmonic generation.
6 for spatially uniform and spectrally tunable second-harmonic generation.
7 biotinylated lipid bilayer was studied using second-harmonic generation.
8 found that GaSI crystals exhibit pronounced second-harmonic generation.
12 gen is a biological macromolecule capable of second harmonic generation, allowing label-free detectio
14 Even when bent, the crystals retain strong second harmonic generation, although with a different in
15 measured fiber alignment and diffusion with second harmonic generation and multiphoton fluorescent r
18 d prove the existence of vertical dipoles by second harmonic generation and piezoresponse force micro
19 ple orientations from polarization-dependent second harmonic generation and sum frequency generation
20 ds with a unique polar structure show strong second harmonic generation and they dissolve in polar so
21 ent results from the simultaneous nonlinear (second harmonic generation and two-photon excitation flu
23 EPPS, we have observed large changes in both second harmonic generation and two-photon fluorescence a
24 symmetric stacking that gives rise to strong second-harmonic generation and enhanced photoluminescenc
25 ally, near-unity circular dichroism for both second-harmonic generation and third-harmonic generation
26 we demonstrate a structural technique using second-harmonic generation and two-photon fluorescence u
27 y throughout spindles using a combination of second-harmonic generation and two-photon fluorescence.
29 ysis algorithms to image fibrillar collagen (second harmonic generation) and elastin (two-photon exci
31 erived from two-photon excited fluorescence, second harmonic generation, and melanocyte morphology fe
32 cterized by UV-visible spectroscopy, Surface Second Harmonic Generation, and Scanning Electron Micros
35 e figures-of-merit of electric field-induced second harmonic generation are yet to be elevated to ena
37 .e., changing from white-light generation to second-harmonic generation as well as controlling the wh
38 eater than 5 x 10(4) picometres per volt for second harmonic generation at a wavelength of about 8 mi
43 s affording inclusion compounds that exhibit second harmonic generation because of this alignment.
44 he sensitivity to transmembrane potential of second harmonic generation by ANEP-chromophore styryl dy
45 excited intrinsic fluorescence combined with second harmonic generation by supermolecular structures
48 optical imaging of chiral crystals based on second harmonic generation can provide sensitive and sel
49 at the nonlinear optical phenomenon known as second-harmonic generation can be used for label-free, t
50 egime, we demonstrate for the first time how second harmonic generation circular dichroism in such ex
51 omputations of the two-photon absorption and second harmonic generation cross sections of the NAAA pr
53 ization coupling in Mn2MnWO6 is evidenced by second harmonic generation effect, and corroborated by m
54 e a coherent on-off switching of its optical second harmonic generation efficiency on the timescale o
55 stem based on optical electric-field-induced second harmonic generation (EFI-SHG) technique that can
56 romophores, including electric field-induced second harmonic generation (EFISH) and X-ray crystallogr
57 Solution-phase DC electric-field-induced second-harmonic generation (EFISH) measurements reveal u
59 ivity of phonon modes and the observation of second harmonic generation establishes a non-centrosymme
60 By a combination of neutron diffraction and second harmonic generation experiments, we have demonstr
61 ared laser was used to simultaneously excite second harmonic generation from A-bands of myofibrils an
63 iphoton excitation fluorescence emission and second harmonic generation from myosin, we demonstrated
64 Here we show highly enhanced and directional second-harmonic generation from individual CdS nanowires
65 supramolecular material exhibits spontaneous second-harmonic generation from infrared to green photon
67 entum conversion of optical vortices through second-harmonic generation from only one atomically thin
69 scanning microscopy and the registration of second harmonic generation images of collagen fibers to
71 ultrastructure via atomic force microscopy, second harmonic generation imaging and scanning electron
72 iopsied tissue sections from 196 patients by second harmonic generation imaging of the backscattered
80 wo-photon excited intrinsic fluorescence and second-harmonic generation imaging of biological tissues
85 h liquid-disordered phases, and shows strong second harmonic generation in the liquid-disordered phas
87 nonlinear optical property characterized by second harmonic generation in the presence of intense la
88 ve nonlinear optical properties in which the second harmonics generation in the extended charge-trans
89 of a tunable diffraction-free array through second-harmonic generation in a nonlinear photonic cryst
90 ly multimode optical beam, in the process of second-harmonic generation in a quadratic nonlinear pota
91 resent the first experimental observation of second-harmonic generation in a whispering-gallery-mode
92 ons beyond the specific case studied here of second-harmonic generation, in particular for parametric
93 aterials meet the requirements for efficient second harmonic generation including lack of center of i
95 cantly changes the magnitude of the observed second-harmonic generation intensity, which is described
100 nchrotron X-ray and neutron diffraction, and second harmonic generation, leads to a transition from a
101 strated via polarized Raman spectroscopy and second-harmonic generation maps of the PdSe(2) flakes.
103 multiple-quantum (MQ) MAS NMR, supported by second harmonic generation measurements and density func
104 roelectric hysteresis loop measurements, and second harmonic generation measurements directly reveals
108 re of ~ 285 K while room temperature optical second harmonic generation measurements possess the symm
109 nation of scanning probe microscopy, optical second harmonic generation measurements, and atomistic m
117 on multiphoton fluorescence and quantitative second harmonic generation microscopy complemented with
120 as evaluated by picrosirius red staining and second harmonic generation microscopy of left ventricle
121 which combines fluorescence, vibrational and second harmonic generation microscopy with secondary ion
128 methodology based on polarization-controlled second-harmonic generation microscopy that allows one to
130 bine two surface sensitive effects: magnetic second-harmonic generation (MSHG) and SP to enhance the
132 n/deuterium exchange experiments confirm the second harmonic generation observations and reveal allos
134 routine histopathological samples imaged via second harmonic generation or using picrosirius, we prop
135 perimentally demonstrate phase-matching-free second harmonic generation over many coherent lengths in
137 on hysteresis, anisotropic chemical etching, second harmonic generation, piezo response force microsc
139 uences the material's functional properties: second-harmonic generation, piezoelectricity, and pyroel
140 external electrical stimuli through optical second harmonic generation polarimetry and in situ TEM e
141 of fibrillar collagen are investigated with second-harmonic generation polarization anisotropy micro
142 illar collagen is developed to interpret the second-harmonic generation polarization properties.
144 i metal analogues and exhibits the strongest second harmonic generation response among reported quate
145 nd were found to exhibit a nonlinear optical second harmonic generation response at 1 microm that is
147 ent symmetry reduction results in an optical second harmonic generation response that is over 550% hi
150 The achiral nonpolar acentric material is second harmonic generation (SHG) active at both 1064 and
151 oscopy approach is developed for quantifying second harmonic generation (SHG) activity of powders tha
153 uence of the interfacial refractive index on second harmonic generation (SHG) and linear dichroism me
154 set of five parameters for each detector in second harmonic generation (SHG) and three parameters fo
155 rized healthy and infarcted myocardium using second harmonic generation (SHG) and two photon excited
156 thus mechanical properties, through imaging second harmonic generation (SHG) and two-photon fluoresc
157 thin these mixtures, we conduct simultaneous second harmonic generation (SHG) and two-photon fluoresc
158 on microscopy of collagen hydrogels produces second harmonic generation (SHG) and two-photon fluoresc
159 rent anti-Stokes Raman scattering (CARS) and second harmonic generation (SHG) are non-linear techniqu
160 wo-photon excitation fluorescence (TPEF) and second harmonic generation (SHG) can image the endogenou
163 ss to the elusive deep-ultraviolet by direct second harmonic generation (SHG) enabled by a new beryll
164 ific, wavelength-dependence of epi-generated second harmonic generation (SHG) excitation efficiency,
165 anoprisms arrays is investigated by means of second harmonic generation (SHG) experiments and simulat
166 1930s is confirmed by new resonance-enhanced second harmonic generation (SHG) experiments demonstrati
167 enhanced Raman scattering (SERS) and optical second harmonic generation (SHG) experiments have been u
169 eity, we imaged human TM to characterize AF, second harmonic generation (SHG) for collagen, and eosin
171 ion label-free primary immunoassay utilizing second harmonic generation (SHG) has been developed and
176 ng endomicroscope capable of high-resolution second harmonic generation (SHG) imaging of biological t
178 ogether with charge coupled device (CCD) and second harmonic generation (SHG) imaging of live cells i
179 ctrical function of spines directly, we used second harmonic generation (SHG) imaging of membrane pot
180 ne particles were recorded by integration of second harmonic generation (SHG) imaging with differenti
187 characterization of these compounds includes second harmonic generation (SHG) measurements, theoretic
191 switch its functionality from a Mueller to a Second Harmonic Generation (SHG) microscope, providing a
193 eate the fibrillar morphology observed in 3D Second Harmonic Generation (SHG) microscopy image data o
195 report the implementation of interferometric second harmonic generation (SHG) microscopy with femtose
196 endogenous (label-free) contrast provided by second harmonic generation (SHG) microscopy, it is possi
201 branes of living cells, they can be used for second harmonic generation (SHG) microscopy; an incident
205 -glass phase-change behavior, exhibit strong second harmonic generation (SHG) response in both crysta
206 (2) shows very large nonlinear optical (NLO) second harmonic generation (SHG) response in the wavelen
208 eads to xerogels which display a spontaneous second harmonic generation (SHG) response without any ne
212 ment of center asymmetry for the creation of second harmonic generation (SHG) signals makes it an att
213 MG is known to be effective in generating second harmonic generation (SHG) signals when adsorbed o
214 fluorescence emission and resonance-enhanced second harmonic generation (SHG) spectra were collected
215 h, were examined using polarization-resolved second harmonic generation (SHG) spectroscopy at the sin
217 f small molecules in E. coli cells, we apply second harmonic generation (SHG) spectroscopy using SHG-
219 ance with dissipation monitoring (QCM-D) and second harmonic generation (SHG) using solid-supported l
220 antel was spectroscopically identified using second harmonic generation (SHG) via a two-photon resona
226 multiphoton excitation fluorescence (MPEF), second harmonic generation (SHG), and coherent Raman sca
227 g two-photon excitation fluorescence (TPEF), second harmonic generation (SHG), and optical coherence
228 immunofluorescence, electron microscopy and second harmonic generation (SHG), and there are advantag
229 ient of 28 pm V(-1) (lambda = 1.369 mum) for second harmonic generation (SHG), the largest NLO suscep
230 uding two-photon autofluorescence (2PAF) and second harmonic generation (SHG), were used to obtain im
231 ed the method of surface potential sensitive second harmonic generation (SHG), which is a label-free
237 s based on tethering proteins labeled with a second-harmonic generation (SHG) active dye to supported
238 The chiral nonpolar acentric material shows second-harmonic generation (SHG) activity at both 1064 a
239 onitored by the normalized ratio between its second-harmonic generation (SHG) and two-photon autofluo
240 single nonlinear imaging modalities such as second-harmonic generation (SHG) and two-photon excited
242 h two-photon excited fluorescence (TPEF) and second-harmonic generation (SHG) from biological and ino
243 oscopy to thick-tissue "intravital" imaging, second-harmonic generation (SHG) from structural protein
244 though the nonlinear optical effect known as second-harmonic generation (SHG) has been recognized sin
247 rtant protein structures give rise to strong second-harmonic generation (SHG) in their native context
250 ed MT structures are selectively imaged with second-harmonic generation (SHG) microscopy in native br
253 an scattering (SRS) microscopy combined with second-harmonic generation (SHG) microscopy to selective
255 eem to be well explored for luminescence and second-harmonic generation (SHG) phenomena; these have b
259 -photon excited autofluorescence (TPEF), and second-harmonic generation (SHG) to investigate the cons
260 t timescales is achieved using time-resolved second-harmonic generation (SHG) to study a ferroelectri
261 applying uniaxial strain, and measurement by second-harmonic generation (SHG) together with the aniso
262 ct solid-state far-UVC laser source based on second-harmonic generation (SHG) using a low-cost commer
264 nous protein structures give rise to intense second-harmonic generation (SHG)-nonabsorptive frequency
274 of water molecules at charged interfaces by second harmonic generation spectroscopy has been heretof
280 uch as surface-enhanced Raman scattering and second-harmonic generation, strong enhancement can only
282 H(3)N-(CH(2))(3)-NH(CH(3))(2))BiI(5) shows a second harmonic generation susceptibility of 7.3 pm V(-1
283 free electron laser, we employed soft X-ray second harmonic generation (SXSHG) spectroscopy to exami
284 Remarkably, at low ion concentrations, the second-harmonic generation technique clearly exposes a m
286 a large interfacial nonlinearity probed via second harmonic generation that is sufficient to achieve
287 copy for two-photon-excited fluorescence and second-harmonic generation that allows straightforward i
289 enhance surface nonlinear processes such as second-harmonic generation, they still suffer from low c
290 escence detection, and two-photon excitation second harmonic generation to evaluate sarcomere length.
293 as 'molecular rulers' and resonance-enhanced second-harmonic generation to measure the dipolar width
294 different types of signals, fluorescence and second harmonic generation, to image biological structur
295 spectroscopy, and angle-dependent polarized second harmonic generation) underscore the importance of
299 ethod benefits from the label-free nature of second harmonic generation, which allows A-bands to be i
300 rties, including two-photon fluorescence and second harmonic generation, which are themselves environ