POLICRYPS, an acronym of POlymer LIquid CRYstal Polymer Slices, is a structure made of perfectly aligned liquid crystal films separated by slices of almost pure polymer. Under suitable experimental and geometrical conditions, the structure is obtained by curing a homogeneous syrup of liquid crystal, monomer and curing agent molecules with a spatially modulated pattern of ultraviolet (UV) radiation. From an optical point of view, POLICRYPS is a holographic diffraction grating with a spatial periodicity that can be easily made of sub-micrometric scale, exhibiting diffraction efficiency values as high as 98%. Depending on the used geometry, the POLICRYPS grating can be utilized both in transmission or reflection, with negligible scattering los...
We have studied the dynamical response at 633 and 1550 nm of a new polymer-liquid crystal composite,...
We have studied the dynamical response at 633 and 1550 nm of a new polymer-liquid crystal composite,...
We have studied the dynamical response at 633 and 1550 nm of a new polymer-liquid crystal composite,...
In this paper we report a detailed characterization of a new structure (POLICRYPS) in which liquid c...
POLICRYPS (an acronym of polymer liquid crystal polymer slices) is a nano/microcomposite structure m...
An experimental and theoretical study is presented on a novel class of electrically switchable diffr...
POLICRYPS (an acronym of polymer liquid crystal polymer slices) is a nano/microcomposite structure m...
We have analysed the electro-optical behaviour at 1550 nm of a new polymer and liquid crystal compos...
We have analysed the electro-optical behaviour at 1550 nm of a new polymer and liquid crystal compos...
We have analysed the electro-optical behaviour at 1550 nm of a new polymer and liquid crystal compos...
Recently, a novel holographic diffraction grating made of polymer slices alternated to homogeneous f...
Recently, a novel holographic diffraction grating made of polymer slices alternated to homogeneous f...
We present a review of polymer-liquid crystal-based devices for optical applications. Starting from ...
The acronym POLICRYPS indicates a nano/micro composite structure made of films of well aligned nemat...
We have studied the dynamical response at 633 and 1550 nm of a new polymer-liquid crystal composite,...
We have studied the dynamical response at 633 and 1550 nm of a new polymer-liquid crystal composite,...
We have studied the dynamical response at 633 and 1550 nm of a new polymer-liquid crystal composite,...
We have studied the dynamical response at 633 and 1550 nm of a new polymer-liquid crystal composite,...
In this paper we report a detailed characterization of a new structure (POLICRYPS) in which liquid c...
POLICRYPS (an acronym of polymer liquid crystal polymer slices) is a nano/microcomposite structure m...
An experimental and theoretical study is presented on a novel class of electrically switchable diffr...
POLICRYPS (an acronym of polymer liquid crystal polymer slices) is a nano/microcomposite structure m...
We have analysed the electro-optical behaviour at 1550 nm of a new polymer and liquid crystal compos...
We have analysed the electro-optical behaviour at 1550 nm of a new polymer and liquid crystal compos...
We have analysed the electro-optical behaviour at 1550 nm of a new polymer and liquid crystal compos...
Recently, a novel holographic diffraction grating made of polymer slices alternated to homogeneous f...
Recently, a novel holographic diffraction grating made of polymer slices alternated to homogeneous f...
We present a review of polymer-liquid crystal-based devices for optical applications. Starting from ...
The acronym POLICRYPS indicates a nano/micro composite structure made of films of well aligned nemat...
We have studied the dynamical response at 633 and 1550 nm of a new polymer-liquid crystal composite,...
We have studied the dynamical response at 633 and 1550 nm of a new polymer-liquid crystal composite,...
We have studied the dynamical response at 633 and 1550 nm of a new polymer-liquid crystal composite,...
We have studied the dynamical response at 633 and 1550 nm of a new polymer-liquid crystal composite,...