These are the experimental results describing random lasing in dye-doped chiral nematic liquid crystals. A novel random lasing emission is studied in this article based on the helical domains of dye-doped chiral nematic liquid crystals in oriented and non-oriented cells. Under frequency doubled 532 nm Nd:YAG (yttrium aluminum garnet) laser-pumped optical excitation, we carefully observed and analysed random lasing from dye-doped chiral nematic liquid crystals with wavelength ranges from 600 nm to 620 nm. In addition, the line-width of multi-mode peaks is less than 0.2 nm. The difference between the two random lasing behaviours in the oriented and non-oriented cells arises...
We have obtained a dye-doped chiral photonic crystal (PC) film with reflection band gap much wider t...
A band-gap-tailored random laser with a wide tunable range and low threshold through infrared radiat...
In this work, we examine the phenomenon of random lasing from the smectic A liquid crystal phase. We...
Random lasers are resonator-less light sources where the optical feedback for lasing arises from rec...
The first observation of random laser action in a partially ordered, optically anisotropic nematic l...
Dye-doped nematic liquid crystals support random lasing under optical pumping, as well as reorientat...
Dye-doped nematic liquid crystals support random lasing under optical pumping, as well as reorientat...
Recently, intense studies on one-dimensional (1D) PBG materials have been performed. The birefringen...
Spatial solitons can affect and enhance random lasing in optically-pumped dye-doped nematic liquid c...
We demonstrate random lasing control exploiting optical gain and light self-localization in a reorie...
Using a chiral nematic liquid crystal with a negative dielectric anisotropy, it is possible to switc...
In this work, we calculate the density of photon states (DOS) of the normal modes in dye-doped chira...
This experimental work is aimed to investigate the thermal behavior of random laser action in dye do...
Random lasers are resonator-less light sources where feedback stems from recurrent scattering at the...
The influence of hydrodynamic flow on the lasing wavelength and stability of the laser emission aver...
We have obtained a dye-doped chiral photonic crystal (PC) film with reflection band gap much wider t...
A band-gap-tailored random laser with a wide tunable range and low threshold through infrared radiat...
In this work, we examine the phenomenon of random lasing from the smectic A liquid crystal phase. We...
Random lasers are resonator-less light sources where the optical feedback for lasing arises from rec...
The first observation of random laser action in a partially ordered, optically anisotropic nematic l...
Dye-doped nematic liquid crystals support random lasing under optical pumping, as well as reorientat...
Dye-doped nematic liquid crystals support random lasing under optical pumping, as well as reorientat...
Recently, intense studies on one-dimensional (1D) PBG materials have been performed. The birefringen...
Spatial solitons can affect and enhance random lasing in optically-pumped dye-doped nematic liquid c...
We demonstrate random lasing control exploiting optical gain and light self-localization in a reorie...
Using a chiral nematic liquid crystal with a negative dielectric anisotropy, it is possible to switc...
In this work, we calculate the density of photon states (DOS) of the normal modes in dye-doped chira...
This experimental work is aimed to investigate the thermal behavior of random laser action in dye do...
Random lasers are resonator-less light sources where feedback stems from recurrent scattering at the...
The influence of hydrodynamic flow on the lasing wavelength and stability of the laser emission aver...
We have obtained a dye-doped chiral photonic crystal (PC) film with reflection band gap much wider t...
A band-gap-tailored random laser with a wide tunable range and low threshold through infrared radiat...
In this work, we examine the phenomenon of random lasing from the smectic A liquid crystal phase. We...