Laser cavities have been realized in various different photonic systems. One of the forefront research fields regards the investigation of the physics of amplifying random optical media. The random laser is a fascinating concept because, further to the fundamental research investigating light transport into complex media, it allows us to obtain non-conventional spectral distribution and angular beam emission patterns not achievable with conventional approaches. Even more intriguing is the possibility to engineer a priori the optical properties of a disordered distribution in an amplifying medium. We demonstrate here the realization of a terahertz quantum cascade laser in an isotropic hyperuniform disordered distribution exhibiting unique fe...
We studied the modes of the highest-quality factor Qm in disordered photonic crystals. by varying th...
The physics and applications of random lasers Recent developments in the field of micro and nanophot...
We demonstrate terahertz (THz) frequency laser emission around 3.2 THz from localized modes in one-d...
Laser cavities have been realized in various different photonic systems. One of the forefront resear...
Laser cavities have been realized in various different photonic systems. One of the forefront resear...
A terahertz quantum cascade laser has been realized from an isotropic disordered hyperuniform design...
Scattering, which is created by dust, clouds, white paints or imperfections of artificial material s...
A terahertz quantum cascade laser has been realized from an isotropic disordered hyperuniform design...
Random lasers are a special class of laser in which light is confined through multiple scattering an...
Random lasers employing multiple scattering and interference processes in highly disordered media ha...
Random lasers are a class of devices in which feedback arises from multiple elastic scattering in a ...
Disordered photonic nanostructures have attracted tremendous interest in the past three decades, not...
We studied the modes of the highest-quality factor Qm in disordered photonic crystals. by varying th...
The physics and applications of random lasers Recent developments in the field of micro and nanophot...
We demonstrate terahertz (THz) frequency laser emission around 3.2 THz from localized modes in one-d...
Laser cavities have been realized in various different photonic systems. One of the forefront resear...
Laser cavities have been realized in various different photonic systems. One of the forefront resear...
A terahertz quantum cascade laser has been realized from an isotropic disordered hyperuniform design...
Scattering, which is created by dust, clouds, white paints or imperfections of artificial material s...
A terahertz quantum cascade laser has been realized from an isotropic disordered hyperuniform design...
Random lasers are a special class of laser in which light is confined through multiple scattering an...
Random lasers employing multiple scattering and interference processes in highly disordered media ha...
Random lasers are a class of devices in which feedback arises from multiple elastic scattering in a ...
Disordered photonic nanostructures have attracted tremendous interest in the past three decades, not...
We studied the modes of the highest-quality factor Qm in disordered photonic crystals. by varying th...
The physics and applications of random lasers Recent developments in the field of micro and nanophot...
We demonstrate terahertz (THz) frequency laser emission around 3.2 THz from localized modes in one-d...