The time-dependent periodic distortion profile in a nematic liquid crystal phase grating has been measured from the displacement of tilt fringes in a Mach-Zehnder interferometer. A 0.2 Hz squarewave voltage was applied to alternate stripe electrodes in an interdigitated electrode geometry. The time-dependent distortion profile is asymmetric with respect to the polarity of the applied voltage and decays with time during each half period due to ionic shielding. This asymmetry in the response allows the determination of the sum of the flexoelectric coefficients (e1+e3) using nematic continuum theory since the device geometry does not possess inherent asymmetry
Flexoelectricity in liquid crystals is thought to be due to a coupling between dielectric properties...
Flexoelectricity in liquid crystals is thought to be due to a coupling between dielectric properties...
The pretilt angle controlled by electric field was studied by the modulation ellipsometry technique....
The time-dependent periodic distortion profile in a nematic liquid crystal phase grating has been me...
An interferometric method using a nematic liquid crystal phase grating has recently been developed f...
An interferometric method using a nematic liquid crystal phase grating has recently been developed f...
An interferometric method using a nematic liquid crystal phase grating has recently been developed f...
An interferometric method using a nematic liquid crystal phase grating has recently been developed f...
An interferometric method using a nematic liquid crystal phase grating has recently been developed f...
An interferometric method using a nematic liquid crystal phase grating has recently been developed f...
An interferometric method using a nematic liquid crystal phase grating has recently been developed f...
An interferometric method using a nematic liquid crystal phase grating has recently been developed f...
Nematic phase gratings have been studied in which a planar nematic layer of thickness 17.2 μm is san...
The work presented is a study of nematic liquid crystal physical properties. One of the phenomenon i...
Nematic phase gratings have been studied in which a planar nematic layer of thickness 17.2 μm is san...
Flexoelectricity in liquid crystals is thought to be due to a coupling between dielectric properties...
Flexoelectricity in liquid crystals is thought to be due to a coupling between dielectric properties...
The pretilt angle controlled by electric field was studied by the modulation ellipsometry technique....
The time-dependent periodic distortion profile in a nematic liquid crystal phase grating has been me...
An interferometric method using a nematic liquid crystal phase grating has recently been developed f...
An interferometric method using a nematic liquid crystal phase grating has recently been developed f...
An interferometric method using a nematic liquid crystal phase grating has recently been developed f...
An interferometric method using a nematic liquid crystal phase grating has recently been developed f...
An interferometric method using a nematic liquid crystal phase grating has recently been developed f...
An interferometric method using a nematic liquid crystal phase grating has recently been developed f...
An interferometric method using a nematic liquid crystal phase grating has recently been developed f...
An interferometric method using a nematic liquid crystal phase grating has recently been developed f...
Nematic phase gratings have been studied in which a planar nematic layer of thickness 17.2 μm is san...
The work presented is a study of nematic liquid crystal physical properties. One of the phenomenon i...
Nematic phase gratings have been studied in which a planar nematic layer of thickness 17.2 μm is san...
Flexoelectricity in liquid crystals is thought to be due to a coupling between dielectric properties...
Flexoelectricity in liquid crystals is thought to be due to a coupling between dielectric properties...
The pretilt angle controlled by electric field was studied by the modulation ellipsometry technique....