Interband cascade devices with switchable laser and superluminescence mode

J J. Fuchsberger (Institute of Solid State Electronics, TU Wien 1 , Vienna,) A A. Windischhofer (Institute of Solid State Electronics, TU Wien 1 , Vienna,) F F. Pilat (Institute of Solid State Electronics, TU Wien 1 , Vienna,) J J. Nauschütz (Nanoplus Nanosystems and Technologies GmbH 2 , Gerbrunn,) R R. Weih (Nanoplus Nanosystems and Technologies GmbH 2 , Gerbrunn,) R R. Szedlak (Institute of Solid State Electronics, TU Wien 1 , Vienna,) B B. Schwarz

Abstract

Superluminescent diodes are usually hard to fabricate and cannot switch to lasing operation. We demonstrate a practical approach for creating devices that can function as a laser as well as a superluminescent diode. The operation mode is controlled by a distinct contact that enables electrical switching between those modes. For the demonstration of this principle, we fabricated devices based on interband cascade gain media. The devices showed superluminescent power of up to 200 μW. The electrically switchable operation combines the good alignment capabilities of a laser with the broadband, low coherence properties of a superluminescent diode.

Article Details

Volume / Issue Vol. 126, Issue 26
Published June 30, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (7)

J

J. Fuchsberger

Institute of Solid State Electronics, TU Wien 1 , Vienna,

A

A. Windischhofer

Institute of Solid State Electronics, TU Wien 1 , Vienna,

F

F. Pilat

Institute of Solid State Electronics, TU Wien 1 , Vienna,

J

J. Nauschütz

Nanoplus Nanosystems and Technologies GmbH 2 , Gerbrunn,

R

R. Weih

Nanoplus Nanosystems and Technologies GmbH 2 , Gerbrunn,

R

R. Szedlak

Institute of Solid State Electronics, TU Wien 1 , Vienna,

B

B. Schwarz