We present a surface emitting distributed feedback terahertz laser resonator based on a dual-slit configuration. With the spacing of the slits as a parameter, the surface losses of the lasers can be chosen over a large range, while keeping slits narrow for optimum current injection. Quantum cascade devices based on a double metal waveguide showed slope efficiencies up to 40 mW/A and peak powers of more than 20 mW. The efficient radiation out-coupling does not depend on boundary conditions, and therefore would allow the application to large-area devices, making this an ideal resonator for high-power surface emission
By lithographically patterning a sequence of air slits with different widths, following the Octonacc...
We demonstrate single-mode surface-emitting terahertz frequency quantum cascade lasers utilising non...
A periodic array of thin slits opened on a metallic surface can act as a one-dimensional photonic cr...
We present a surface emitting distributed feedback terahertz laser resonator based on a dual-slit co...
We present a surface emitting distributed feedback terahertz laser resonator based on a dual-slit co...
Surface emission from distributed feedback terahertz quantum cascade lasers operating in double-meta...
Surface emission from distributed feedback terahertz quantum cascade lasers operating in double-meta...
Surface emission from distributed feedback terahertz quantum cascade lasers operating in double-meta...
We present distributed-feedback Terahertz quantum cascade lasers operating in a double-metal ring wa...
We present distributed-feedback Terahertz quantum cascade lasers operating in a double-metal ring wa...
We present distributed-feedback Terahertz quantum cascade lasers operating in a double-metal ring wa...
We analyze surface-emitting distributed feedback resonators for Terahertz quantum cascade lasers fab...
In this paper, we have modeled and fabricated THz QCLs in a circular double-metal DFB resonator of m...
Quasi-crystal distributed feedback lasers do not require any form of mirror cavity to amplify and ex...
We first describe a novel concept to excite the fundamental radiative mode in second-order distribut...
By lithographically patterning a sequence of air slits with different widths, following the Octonacc...
We demonstrate single-mode surface-emitting terahertz frequency quantum cascade lasers utilising non...
A periodic array of thin slits opened on a metallic surface can act as a one-dimensional photonic cr...
We present a surface emitting distributed feedback terahertz laser resonator based on a dual-slit co...
We present a surface emitting distributed feedback terahertz laser resonator based on a dual-slit co...
Surface emission from distributed feedback terahertz quantum cascade lasers operating in double-meta...
Surface emission from distributed feedback terahertz quantum cascade lasers operating in double-meta...
Surface emission from distributed feedback terahertz quantum cascade lasers operating in double-meta...
We present distributed-feedback Terahertz quantum cascade lasers operating in a double-metal ring wa...
We present distributed-feedback Terahertz quantum cascade lasers operating in a double-metal ring wa...
We present distributed-feedback Terahertz quantum cascade lasers operating in a double-metal ring wa...
We analyze surface-emitting distributed feedback resonators for Terahertz quantum cascade lasers fab...
In this paper, we have modeled and fabricated THz QCLs in a circular double-metal DFB resonator of m...
Quasi-crystal distributed feedback lasers do not require any form of mirror cavity to amplify and ex...
We first describe a novel concept to excite the fundamental radiative mode in second-order distribut...
By lithographically patterning a sequence of air slits with different widths, following the Octonacc...
We demonstrate single-mode surface-emitting terahertz frequency quantum cascade lasers utilising non...
A periodic array of thin slits opened on a metallic surface can act as a one-dimensional photonic cr...