scholarly journals Ultrafast dynamics and structure at aqueous interfaces by second harmonic generation

1996 ◽  
Vol 205 (1-2) ◽  
pp. 167-178 ◽  
Author(s):  
X. Shi ◽  
E. Borguet ◽  
A.N. Tarnovsky ◽  
K.B. Eisenthal
2018 ◽  
Vol 60 (1) ◽  
pp. 33
Author(s):  
К.А. Брехов ◽  
К.А. Гришунин ◽  
Д.В. Афанасьев ◽  
С.В. Семин ◽  
Н.Э. Шерстюк ◽  
...  

AbstractBy means of optical pump–probe technique, the ultrafast dynamics of nonlinear optical response of the ferroelectric semiconductor Sn_2P_2S_6 crystal excited with a femtosecond laser pulse has been investigated. It has been shown that, under the action of femtosecond pulses, change in optical second harmonic generation occurs in the sample, which can be due to screening of existing electric polarization.


2019 ◽  
Author(s):  
Mavis D. Boamah ◽  
Paul Ohno ◽  
Emilie Lozier ◽  
Jacqueline van Ardenne ◽  
Franz Geiger

<p>Ion specific outcomes at aqueous interfaces remain among the most enigmatic phenomena in interfacial chemistry. Here, charged fused silica/water interfaces have been probed by homodyne- and heterodyne-detected (HD) second harmonic generation (SHG) spectroscopy at pH 7 and pH 5.8 and for concentrations of LiCl, NaCl, NaBr, NaI, KCl, RbCl, and CsCl ranging from 10 mM to several 100 mM. For ionic strengths around 0.1 mM to 1 mM, SHG intensities increase reversibly by up to 15% compared to the condition of zero added salt because of optical phase matching and electrical double layer. For ionic strengths above 1 mM, use of any combination of cations and anions produces decreases in SHG response by as much as 50%, trending with ion softness when compared to the condition of zero added salt. Gouy-Chapman model fits to homodyned SHG intensities for the alkali halides studied here show charge densities increase significantly with decreasing cation size. HD-SHG measurements indicate diffuse layer properties probed by the SHG process are invariant with ion identity, while Stern layer properties, as reported by chi(2), are subject to ion specificity for the ions surveyed in this work in the order of chi(2)RbCl=1/2 chi(2)NaCl=1/4 chi(2)NaI. Supporting Information available upon request to the Corresponding Author.</p>


2019 ◽  
Author(s):  
Mavis D. Boamah ◽  
Paul Ohno ◽  
Emilie Lozier ◽  
Jacqueline van Ardenne ◽  
Franz Geiger

<p>Ion specific outcomes at aqueous interfaces remain among the most enigmatic phenomena in interfacial chemistry. Here, charged fused silica/water interfaces have been probed by homodyne- and heterodyne-detected (HD) second harmonic generation (SHG) spectroscopy at pH 7 and pH 5.8 and for concentrations of LiCl, NaCl, NaBr, NaI, KCl, RbCl, and CsCl ranging from 10 mM to several 100 mM. For ionic strengths around 0.1 mM to 1 mM, SHG intensities increase reversibly by up to 15% compared to the condition of zero added salt because of optical phase matching and electrical double layer. For ionic strengths above 1 mM, use of any combination of cations and anions produces decreases in SHG response by as much as 50%, trending with ion softness when compared to the condition of zero added salt. Gouy-Chapman model fits to homodyned SHG intensities for the alkali halides studied here show charge densities increase significantly with decreasing cation size. HD-SHG measurements indicate diffuse layer properties probed by the SHG process are invariant with ion identity, while Stern layer properties, as reported by chi(2), are subject to ion specificity for the ions surveyed in this work in the order of chi(2)RbCl=1/2 chi(2)NaCl=1/4 chi(2)NaI. Supporting Information available upon request to the Corresponding Author.</p>


1992 ◽  
Vol 139 (2) ◽  
pp. 133 ◽  
Author(s):  
N.M. Lawandy ◽  
T.J. Driscoll ◽  
C.L. Adler ◽  
N.M. Lawandy

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