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1                 Under a circularly polarized nonresonant 2 ps pulse excitation, a sub-10-ps transient
2 could be switched by exposure to resonant or nonresonant 24-h or 20-h lighting cycles.
3 when exposed to an intense (10(13) W/cm(2)), nonresonant (800 nm), ultrafast (75 fs) laser pulse.
4 w-intensity species in IRMPD spectra because nonresonant activation causes these species to dissociat
5  and reflectivity spectra were collected for nonresonant analytes as a function of incident angle at
6  SERS activity of our novel substrates using nonresonant analytes.
7 l demonstrates robust generalization to both nonresonant and higher multiplicity configurations, in t
8                                    Broadband nonresonant and narrowband resonant optical reconfigurat
9 quantitative description of HB data for both nonresonant and resonant burning conditions.
10 itude and of single molecule sensitivity for nonresonant and resonant reporters, respectively.
11 n-) anions and dianions, a comparison of the nonresonant and resonant S Kbeta XES spectra highlights
12 ear-infrared laser was used to generate both nonresonant and resonantly enhanced third harmonic radia
13 apulse 3-colour excitation, and utilizes the nonresonant background (NRB) to heterodyne amplify weak
14  coherent interference of resonant Raman and nonresonant background and its intensity is not linearly
15  narrowband laser pulse help to suppress the nonresonant background and to retrieve the species-speci
16 entration and has a Raman line shape free of nonresonant background distortions.
17 confocal Raman microscopy while avoiding the nonresonant background problem of coherent anti-Stokes R
18  ultracold chemistry, observing resonant and nonresonant barrier tunnelling, matter-wave interference
19         The latter measurements afford total nonresonant beta(0) responses as high as ca. 600 x 10(-3
20                Calculated intensities from a nonresonant, bond polarizability model optimized for sp2
21  to freely move during stimulation, and uses nonresonant carrier frequencies.
22 tional state-dependent ionization delay in a nonresonant channel.
23 shows a reasonable fit to models of coherent nonresonant charge tunneling.
24  uranyl adsorption isotherms collected using nonresonant chi(3) experiments and resonantly enhanced S
25                                    Using the nonresonant chi(3) technique and the Gouy-Chapman model,
26 erent and incoherent as well as resonant and nonresonant components as a function of incident pulse d
27                          When operated under nonresonant conditions, sensor elements were found to re
28 ce as a guide, we show that the resonant and nonresonant contributions to the SF responses are compar
29 te the observed signal into its resonant and nonresonant contributions.
30 g near-infrared femtosecond laser pulses for nonresonant desorption and ionization of sample constitu
31 ures with four-fold symmetry, which exhibits nonresonant Drude-like response and can therefore avoid
32 l chain length are consistent with coherent, nonresonant electron tunneling across the SAM.
33                                          The nonresonant electronic background and singly resonant co
34                                        BAD's nonresonant excitation mechanism overcomes a major drawb
35 nerate an asymmetric time-periodic rotating, nonresonant excitation profile that both injects and sti
36 mulations with 3 min acquisition times using nonresonant excitation, whereas no signal was recorded f
37 l information that is lost in a conventional nonresonant experiment.
38 y, we provide evidence that tightly focused, nonresonant, far-field THG imaging experiments do not pr
39 is of multicomponent protein solutions using nonresonant femtosecond (fs) laser vaporization with ele
40                                            A nonresonant, femtosecond duration laser pulse vaporizes
41 led by interfacing intense (10(13) W/cm(2)), nonresonant, femtosecond laser vaporization at ambient p
42 ength) that utilizes a miniaturized resonant/nonresonant fiber raster scanner and a multielement grad
43     For example, a technique, mitigating the nonresonant four-wave-mixing noise while maximizing the
44 y nearly an order of magnitude compared with nonresonant geometries.
45 ier approach by Reppert is found to describe nonresonant HB spectra only.
46 e with increasing fluence, in agreement with nonresonant hole burned spectra.
47 A theory for the calculation of resonant and nonresonant hole-burning (HB) spectra of pigment-protein
48 a spectroscopic technique, namely core-level nonresonant inelastic X-ray scattering (NIXS).
49                                    We report nonresonant inelastic X-ray scattering (NRIXS) measureme
50  This involves comparing spectra measured by nonresonant inelastic X-ray scattering (NRIXS), a bulk-s
51                                In this work, nonresonant inelastic X-ray scattering from core electro
52  Tc, Re) are evaluated for the first time by nonresonant inelastic X-ray scattering, X-ray absorption
53 s sensitivity is by engineering a strong but nonresonant interaction between the oscillator and an at
54                                            A nonresonant IR pulse (1064 nm) supplies a strong electri
55 n both cases, compared to the absence of the nonresonant IR pulse.
56 ed laser desorption/ionization (MALDI) under nonresonant laser irradiation of the sample.
57                                              Nonresonant laser vaporization combined with high-resolu
58 ure efficiency by the electrospray plume for nonresonant laser vaporization of oxycodone and atenolol
59 a direct evidence that energy can relax from nonresonant low energy molecular states directly into hy
60 r role in the nonlinear response to intense, nonresonant, low-frequency light is often overlooked as
61                        The cross section for nonresonant magnetic x-ray scattering depends on the ant
62 y adduct attachment to the analyte ions, the nonresonant MALDI spectra demonstrated better resolution
63                                              Nonresonant manipulation of nuclear spins can probe larg
64     Then, the same active system, due to the nonresonant mechanism of higher harmonics of light induc
65 -plane cloak can be realized with the use of nonresonant metamaterial elements, resulting in a struct
66 O) and ciprofloxacin (CIPRO), were chosen as nonresonant molecular probes.
67 s 2.5 x 10(10) on Ag nanoshell films for the nonresonant molecule p-mercaptoaniline are measured.
68  reveal unprecedented hyperpolarizabilities (nonresonant mubeta as high as -488,000 x 10(-48) esu at
69 second laser desorption mechanism involves a nonresonant, multiphoton process, rather than thermal- o
70 e unavoidable loss in sensitivity due to the nonresonant nature of the transmission line probe (low Q
71 tory strengths are sufficient to account for nonresonant optical activity.
72                  Accounting for resonant and nonresonant optical scattering, we reliably model experi
73 hieving label-free detection of unstable and nonresonant organic molecules.
74                        Results indicate that nonresonant photons lower the activation barrier for som
75                                          The nonresonant probe allows for transmission, reflection, o
76 cal Stark effect in WSe2 monolayers from the nonresonant pump, resulting in an energy splitting of mo
77 ols (HCs) were studied using colorimetry and nonresonant Raman spectroscopy.
78 zation applied to the imaginary part and the nonresonant real part of the susceptibility with an addi
79 o the new solvent manifests primarily in the nonresonant response, not the resonant response.
80  and without experimental suppression of the nonresonant response.
81 arization can be manipulated using a simple, nonresonant scanning probe consisting of the sharp metal
82              The disordered core contributes nonresonant scattering that induces a macroscopically wh
83 r than signals from SERRS on nanospheres and nonresonant SERS on nanostars.
84 ular structure of the interface, whereas the nonresonant signal is commonly treated as a background a
85                                          The nonresonant signal is significant and must be properly i
86 ctrum was found to change over time when the nonresonant signal was present but not when the nonreson
87 resonant signal was present but not when the nonresonant signal was suppressed.
88 y of field application are transmitted while nonresonant species are eliminated.
89 ults obtained from showcase resonant dye and nonresonant thiophenol monolayers adsorbed on Au single
90                           Here, we present a nonresonant transmission line ESR probe (microstrip geom
91                                          The nonresonant transmission line probe maintains detection
92 bination of our sensitive interferometer and nonresonant transmission line provides similar sensitivi
93  experimental data and simulations suggest a nonresonant tunneling mechanism involving hole transport
94 ion with molecular length, characteristic of nonresonant tunneling.
95 cond laser triggers photodecarbonylation via nonresonant two- or three-photon excitation.
96    We then quantify and compare resonant and nonresonant VSFS and VSFG experimental data using the sa
97       Light exiting the NSOM probe, which is nonresonant with the acceptor dye, excites the donor dye
98 00x improvement) by developing a near-field, nonresonant, X-band ESR spectrometric method.
99                        While the TFY XAS and nonresonant XES data are readily interpreted by theory,
100 ndard total fluorescence yield (TFY) XAS and nonresonant XES data were obtained.
101                                 The TFY XAS, nonresonant XES, and VtC RXES data were all modeled with

 
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