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APL Photonics, volume 10, issue 3

Integrated mode-hop-free tunable lasers at 780 nm for chip-scale classical and quantum photonic applications

J E Castro 1
Eber Nolasco-Martinez 2
Paolo Pintus 1, 3
Zeyu Zhang 4
Boqiang Shen 4
Theodore J. Morin 1
L Thiel 1
Trevor J. Steiner 5
Nicholas Lewis 1
Sahil D. Patel 1
David M. Weld 2
Galan Moody 1
2
 
Physics Department, University of California 2 , Santa Barbara, California 93106,
3
 
Physics Department, University of Cagliari 3 , Monserrato IT 09042,
4
 
Nexus Photonics Inc. 4 , Goleta, California 93117,
5
 
Materials Department, University of California 5 , Santa Barbara, California 93106,
Publication typeJournal Article
Publication date2025-03-01
Journal: APL Photonics
scimago Q1
wos Q1
SJR1.880
CiteScore10.3
Impact factor5.4
ISSN23780967
Abstract

In the past decade, remarkable advances in integrated photonic technologies have enabled table-top experiments and instrumentation to be scaled down to compact chips with significant reduction in size, weight, power consumption, and cost. Here, we demonstrate an integrated continuously tunable laser in a heterogeneous gallium arsenide-on-silicon nitride (GaAs-on-SiN) platform that emits in the far-red radiation spectrum near 780 nm, with 20 nm tuning range, <6 kHz intrinsic linewidth, and a >40 dB side-mode suppression ratio. The GaAs optical gain regions are heterogeneously integrated with low-loss SiN waveguides. The narrow linewidth lasing is achieved with an extended cavity consisting of a resonator-based Vernier mirror and a phase shifter. Utilizing synchronous tuning of the integrated heaters, we show mode-hop-free wavelength tuning over a range larger than 100 GHz (200 pm). To demonstrate the potential of the device, we investigate two illustrative applications: (i) the linear characterization of a silicon nitride microresonator designed for entangled-photon pair generation and (ii) the absorption spectroscopy and locking to the D1 and D2 transition lines of 87Rb. The performance of the proposed integrated laser holds promise for a broader spectrum of both classical and quantum applications in the visible range, encompassing communication, control, sensing, and computing.

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Castro J. E. et al. Integrated mode-hop-free tunable lasers at 780 nm for chip-scale classical and quantum photonic applications // APL Photonics. 2025. Vol. 10. No. 3.
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Castro J. E., Nolasco-Martinez E., Pintus P., Zhang Z., Shen B., Morin T. J., Thiel L., Steiner T. J., Lewis N., Patel S. D., J. E. Bowers J. E. B., Weld D. M., Moody G. Integrated mode-hop-free tunable lasers at 780 nm for chip-scale classical and quantum photonic applications // APL Photonics. 2025. Vol. 10. No. 3.
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TY - JOUR
DO - 10.1063/5.0232377
UR - https://pubs.aip.org/app/article/10/3/036102/3337842/Integrated-mode-hop-free-tunable-lasers-at-780-nm
TI - Integrated mode-hop-free tunable lasers at 780 nm for chip-scale classical and quantum photonic applications
T2 - APL Photonics
AU - Castro, J E
AU - Nolasco-Martinez, Eber
AU - Pintus, Paolo
AU - Zhang, Zeyu
AU - Shen, Boqiang
AU - Morin, Theodore J.
AU - Thiel, L
AU - Steiner, Trevor J.
AU - Lewis, Nicholas
AU - Patel, Sahil D.
AU - J. E. Bowers, J. E. Bowers
AU - Weld, David M.
AU - Moody, Galan
PY - 2025
DA - 2025/03/01
PB - AIP Publishing
IS - 3
VL - 10
SN - 2378-0967
ER -
BibTex
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@article{2025_Castro,
author = {J E Castro and Eber Nolasco-Martinez and Paolo Pintus and Zeyu Zhang and Boqiang Shen and Theodore J. Morin and L Thiel and Trevor J. Steiner and Nicholas Lewis and Sahil D. Patel and J. E. Bowers J. E. Bowers and David M. Weld and Galan Moody},
title = {Integrated mode-hop-free tunable lasers at 780 nm for chip-scale classical and quantum photonic applications},
journal = {APL Photonics},
year = {2025},
volume = {10},
publisher = {AIP Publishing},
month = {mar},
url = {https://pubs.aip.org/app/article/10/3/036102/3337842/Integrated-mode-hop-free-tunable-lasers-at-780-nm},
number = {3},
doi = {10.1063/5.0232377}
}
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