中赤外域パルス発生チップ開発(A compact, mid-infrared pulse generator)

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2025-04-16 ハーバード大学

ハーバード大学SEASの研究チームは、中赤外線領域でピコ秒パルスを生成する世界初のオンチップ型レーザー装置を開発しました。この装置は、量子カスケードレーザー(QCL)を基盤とし、複雑な外部装置を必要とせず、単一チップ上で超短パルスを生成可能です。ナノ構造化半導体を用いて高いコヒーレンスを実現しており、環境ガスのセンシングや医療用分光分析への応用が期待されます。従来よりも小型かつ商業生産が容易で、広帯域光源としての利用も視野に入れられています。

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中赤外レーザーチップ上で駆動される明るいソリトン Driven bright solitons on a mid-infrared laser chip

Dmitry Kazakov,Theodore P. Letsou,Marco Piccardo,Lorenzo L. Columbo,Massimo Brambilla,Franco Prati,Sandro Dal Cin,Maximilian Beiser,Nikola Opačak,Pawan Ratra,Michael Pushkarsky,David Caffey,Timothy Day,Luigi A. Lugiato,Benedikt Schwarz & Federico Capasso
Nature  Published:16 April 2025
DOI:https://doi.org/10.1038/s41586-025-08853-y

中赤外域パルス発生チップ開発(A compact, mid-infrared pulse generator)

Abstract

Despite the continuing progress in integrated optical frequency comb technology1, compact sources of short, bright pulses in the mid-infrared wavelength range from 3 to 12 μm so far remain beyond reach. The state-of-the-art ultrafast pulse emitters in the mid-infrared are complex, bulky and inefficient systems based on the downconversion of near-infrared or visible pulsed laser sources. Here we show a purely DC-driven semiconductor laser chip that generates 1-ps solitons at the centre wavelength of 8.3 μm at GHz repetition rates. The soliton generation scheme is akin to that of passive nonlinear Kerr resonators2. It relies on a fast bistability in active nonlinear laser resonators, unlike traditional passive mode-locking, which relies on saturable absorbers3, or active mode-locking by gain modulation in semiconductor lasers4. Monolithic integration of all components—drive laser, active ring resonator, coupler and pump filter—enables turnkey generation of bright solitons that remain robust for hours of continuous operation without active stabilization. Such devices can be readily produced at industrial laser foundries using standard fabrication protocols. Our work unifies the physics of active and passive microresonator frequency combs while simultaneously establishing a technology for nonlinear integrated photonics in the mid-infrared5.

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