The bond fluctuation model of superionic conductors predicts that the polarizabilityof solids that exhibit high ionic conduction is large. Based on this background, a study on thenonlinear optical constants in superionic glasses has been started. As a first step, therelationship between the third-order susceptibility χ(3) and the linear susceptibility χ(1) ofvarious kinds of glasses has been studied. It is found that the values of χ(3) of superionicconducting glasses exceed considerably the values predicted by the usual Miller rule. Thedeviation arises from the increase of the ionic coordinate dependent electronic polarizability,which plays also an important role in the ion transport processes
In a previous study, we have proposed a model that describes the non-Arrhenius ionic conduction beha...
This paper describes nonlinear ion transport properties of liquid and solid electrolytes. Typically,...
In order to identify the dominant mechanism of ionic conduction, the electrical conductivity and ion...
The bond fluctuation model of superionic conductors predicts that the polarizability of solids that ...
According to the bond fluctuation model of superionic conductors, the polarizability of a material ...
Guided by the prediction of the bond fluctuation model of superionic conductors, the relation betwee...
Abstract. We have used a hopping conduction model to calculate the frequency-dependent polarization ...
The peculiarities of superionic conductors are elucidated by studying the chemical trends of materia...
AbstractThe peculiarities of superionic conductors are elucidated by studying the chemical trends of...
The bond fluctuation model of superionic conductors provides a framework to understand the character...
Study on the correlation between ionic conduction and nonlinear optical (NLO) constants has been ext...
The material trends in various silver ion conducting glasses have been studied recently by focusing ...
Many superionic conducting glasses follow the Arrhenius type temperature dependence of ionic conduct...
The power-law frequency dependence of both the conductivity, (), and permittivity, (), of ion-conduc...
The chemical approach made to investigate the origin of fast ion conduction in Agl-based fast ion co...
In a previous study, we have proposed a model that describes the non-Arrhenius ionic conduction beha...
This paper describes nonlinear ion transport properties of liquid and solid electrolytes. Typically,...
In order to identify the dominant mechanism of ionic conduction, the electrical conductivity and ion...
The bond fluctuation model of superionic conductors predicts that the polarizability of solids that ...
According to the bond fluctuation model of superionic conductors, the polarizability of a material ...
Guided by the prediction of the bond fluctuation model of superionic conductors, the relation betwee...
Abstract. We have used a hopping conduction model to calculate the frequency-dependent polarization ...
The peculiarities of superionic conductors are elucidated by studying the chemical trends of materia...
AbstractThe peculiarities of superionic conductors are elucidated by studying the chemical trends of...
The bond fluctuation model of superionic conductors provides a framework to understand the character...
Study on the correlation between ionic conduction and nonlinear optical (NLO) constants has been ext...
The material trends in various silver ion conducting glasses have been studied recently by focusing ...
Many superionic conducting glasses follow the Arrhenius type temperature dependence of ionic conduct...
The power-law frequency dependence of both the conductivity, (), and permittivity, (), of ion-conduc...
The chemical approach made to investigate the origin of fast ion conduction in Agl-based fast ion co...
In a previous study, we have proposed a model that describes the non-Arrhenius ionic conduction beha...
This paper describes nonlinear ion transport properties of liquid and solid electrolytes. Typically,...
In order to identify the dominant mechanism of ionic conduction, the electrical conductivity and ion...