Short-period InGaAs/AlInAs THz quantum cascade lasers in thin double metal cavities operating up to 188 K

S Sebastian Gloor (Institute for Quantum Electronics, Department of Physics, ETH Zürich 1 , 8093 Zürich,) D David Stark (Institute for Quantum Electronics, Department of Physics, ETH Zürich 1 , 8093 Zürich,) M Martin Franckié (Institute for Quantum Electronics, Department of Physics, ETH Zürich 1 , 8093 Zürich,) U Urban Senica M Mattias Beck G Giacomo Scalari J Jérôme Faist

Abstract

We present a two-well terahertz (THz) quantum cascade laser designed for high-temperature operation based on the InGaAs/AlInAs material system. The lighter effective mass and higher energy barriers increase the gain at high temperatures (T > 150 K). When processed in copper-based double metal waveguides, the devices show laser action up to a maximum operating temperature of 188 K with a maximum current density of 1.4 kA/cm2. The low Joule heating due to reduced active region thickness and low electrical bias allows operation at 10% duty cycle up to a temperature of 170 K.

Article Details

Volume / Issue Vol. 128, Issue 14
Published April 06, 2026
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (7)

S

Sebastian Gloor

Institute for Quantum Electronics, Department of Physics, ETH Zürich 1 , 8093 Zürich,

D

David Stark

Institute for Quantum Electronics, Department of Physics, ETH Zürich 1 , 8093 Zürich,

M

Martin Franckié

Institute for Quantum Electronics, Department of Physics, ETH Zürich 1 , 8093 Zürich,

U

Urban Senica

M

Mattias Beck

G

Giacomo Scalari

J

Jérôme Faist