Ultrashort pulse generation from a graphene-coupled passively mode-locked terahertz laser
Abstract
The generation of stable trains of ultra-short (fs-ps), terahertz (THz)-frequency radiation pulses, with large instantaneous intensities, is an underpinning requirement for the investigation of light-matter interactions, for metrology and for ultra-high-speed communications. In solid-state electrically-pumped lasers, the primary route for generating short pulses is through passive mode-locking. However, this has not yet been achieved in the THz range, defining one of the longest standing goals over the last two decades. In fact, the realization of passive mode-locking has long been assumed to be inherently hindered by the fast recovery times associated with the intersubband gain of THz lasers. Here, we demonstrate a self-starting miniaturized ultra-short pulse THz laser, exploiting an original device architecture that includes the surface patterning of multilayer-graphene saturable absorbers distributed along the entire cavity of a double-metal semiconductor 2.30-3.55 THz wire laser. Self-starting pulsed emission with 4.0-ps-long pulses in a compact, all-electronic, all-passive and inexpensive configuration is demonstrated.
Keywords
Cite
@article{arxiv.2209.10204,
title = {Ultrashort pulse generation from a graphene-coupled passively mode-locked terahertz laser},
author = {Elisa Riccardi and Valentino Pistore and Seonggil Kang and Lukas Seitner and Anna De Vetter and Christian Jirauschek and Juliette Mangeney and Lianhe Li and A. Giles Davies and Edmund H. Linfield and Andrea C. Ferrari and Sukhdeep S. Dhillon and Miriam S. Vitiello},
journal= {arXiv preprint arXiv:2209.10204},
year = {2023}
}
Comments
20 pages, 4 figures