Electrically-injected room-temperature waveguide polariton laser

Fuente: arXiv
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Bibliographic Details
Main Authors: Souissi, Hassen, Develay, Valentin, Gromovyi, Maksym, Cambril, Edmond, Brimont, Christelle, Doyennette, Laetitia, Malpuech, Guillaume, Solnyshkov, Dmitry, Alloing, Blandine, Chenot, Sebastien, Al-Khalfioui, Mohamed, Frayssinet, Eric, Duboz, Jean-Yves, Zhang, Mingyang, Perez, Jesus-Zuniga, Bouchoule, Sophie, Guillet, Thierry
Format: Preprint
Published: 2026
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author Souissi, Hassen
Develay, Valentin
Gromovyi, Maksym
Cambril, Edmond
Brimont, Christelle
Doyennette, Laetitia
Malpuech, Guillaume
Solnyshkov, Dmitry
Alloing, Blandine
Chenot, Sebastien
Al-Khalfioui, Mohamed
Frayssinet, Eric
Duboz, Jean-Yves
Zhang, Mingyang
Perez, Jesus-Zuniga
Bouchoule, Sophie
Guillet, Thierry
author_facet Souissi, Hassen
Develay, Valentin
Gromovyi, Maksym
Cambril, Edmond
Brimont, Christelle
Doyennette, Laetitia
Malpuech, Guillaume
Solnyshkov, Dmitry
Alloing, Blandine
Chenot, Sebastien
Al-Khalfioui, Mohamed
Frayssinet, Eric
Duboz, Jean-Yves
Zhang, Mingyang
Perez, Jesus-Zuniga
Bouchoule, Sophie
Guillet, Thierry
contents Exciton-polariton lasers are coherent light sources which do not require the population inversion (transparency) condition to be fulfilled. They have been conceptualized at the end of the XXth century but until now they operate almost exclusively under optical injection, which severely limits the widespread integration of the polariton-based devices implemented so far. Here we tackle this issue by reporting an electrically-pumped exciton-polariton laser based on GaN and operating at room temperature in a mode-locked regime. The laser architecture is close to the geometry of commercial ridge-waveguide GaN lasers, but based on a bulk GaN active region instead of quantum wells. Unique features of polariton lasers are demonstrated, in particular the breakdown of the transparency condition, which enables our polariton lasers to operate even when only a small fraction (20\%) of the cavity length is injected. Moreover, the large polaritonic gain allows for the operation of a short cavity length (60$μm$) compared to commercial lasers. From the very same sample, we also achieve polariton lasing under optical injection, confirming that the doped layers necessary for electrical injection do not prevent strong-coupling nor polariton lasing. Our results open a new perspective for polariton-based devices.
format Preprint
id arxiv_https___arxiv_org_abs_2604_19513
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Electrically-injected room-temperature waveguide polariton laser
Souissi, Hassen
Develay, Valentin
Gromovyi, Maksym
Cambril, Edmond
Brimont, Christelle
Doyennette, Laetitia
Malpuech, Guillaume
Solnyshkov, Dmitry
Alloing, Blandine
Chenot, Sebastien
Al-Khalfioui, Mohamed
Frayssinet, Eric
Duboz, Jean-Yves
Zhang, Mingyang
Perez, Jesus-Zuniga
Bouchoule, Sophie
Guillet, Thierry
Optics
Other Condensed Matter
Exciton-polariton lasers are coherent light sources which do not require the population inversion (transparency) condition to be fulfilled. They have been conceptualized at the end of the XXth century but until now they operate almost exclusively under optical injection, which severely limits the widespread integration of the polariton-based devices implemented so far. Here we tackle this issue by reporting an electrically-pumped exciton-polariton laser based on GaN and operating at room temperature in a mode-locked regime. The laser architecture is close to the geometry of commercial ridge-waveguide GaN lasers, but based on a bulk GaN active region instead of quantum wells. Unique features of polariton lasers are demonstrated, in particular the breakdown of the transparency condition, which enables our polariton lasers to operate even when only a small fraction (20\%) of the cavity length is injected. Moreover, the large polaritonic gain allows for the operation of a short cavity length (60$μm$) compared to commercial lasers. From the very same sample, we also achieve polariton lasing under optical injection, confirming that the doped layers necessary for electrical injection do not prevent strong-coupling nor polariton lasing. Our results open a new perspective for polariton-based devices.
title Electrically-injected room-temperature waveguide polariton laser
topic Optics
Other Condensed Matter
url https://arxiv.org/abs/2604.19513