Lasing of Quantum-Dot Micropillar Lasers Under Elevated Temperatures

被引:1
作者
Babichev, Andrey [1 ]
Makhov, Ivan [2 ]
Kryzhanovskaya, Natalia [2 ]
Blokhin, Alexey [1 ]
Zadiranov, Yuri [1 ]
Salii, Yulia [1 ]
Kulagina, Marina [1 ]
Bobrov, Mikhail [1 ]
Vasil'ev, Alexey [1 ]
Blokhin, Sergey [1 ]
Maleev, Nikolay [1 ]
Tchernycheva, Maria [3 ]
Karachinsky, Leonid [4 ]
Novikov, Innokenty [4 ]
Egorov, Anton [4 ]
机构
[1] Ioffe Inst, St Petersburg 194021, Russia
[2] HSE Univ, St Petersburg 190008, Russia
[3] Univ Paris Saclay, Ctr Nanosci & Nanotechnol, CNRS, UMR9001, F-91120 Palaiseau, France
[4] ITMO Univ, St Petersburg 197101, Russia
基金
俄罗斯科学基金会;
关键词
Microcavities; Distributed Bragg reflectors; Q-factor; Vertical cavity surface emitting lasers; Etching; Photonics; Optical pumping; Numerical models; Laser modes; Personal protective equipment; Fundamental vertical mode; micropillar; distributed Bragg reflectors; quantum dots; reservoir computing;
D O I
10.1109/JSTQE.2024.3494245
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
A comprehensive numerical modelling of microcavity parameters for micropillar lasers with optical pumping was presented. The structure with a hybrid dielectric-semiconductor top mirror has a significantly higher calculated quality-factor (similar to 65000 for 5 mu m pillar) due to better vertical mode confinement. The minimum laser threshold (similar to 370 mu W for 5 mu m pillar) coincided with a temperature of 130 K, which is close to zero gain to cavity detuning. Lasing up to 220 K was demonstrated with a laser threshold of about 2.2 mW.
引用
收藏
页数:8
相关论文
共 27 条
[1]   Optical pumping of quantum dot micropillar lasers [J].
Andreoli, L. ;
Porte, X. ;
Heuser, T. ;
Grobe, J. ;
Moeglen-Paget, B. ;
Furfaro, L. ;
Reitzenstein, S. ;
Brunner, D. .
OPTICS EXPRESS, 2021, 29 (06) :9084-9097
[2]  
Babichev A., 2024, Semiconductors, V58, P318, DOI [10.61011/FTP.2024.06.58946.628, DOI 10.61011/FTP.2024.06.58946.628]
[3]   Long-Wavelength VCSELs: Status and Prospects [J].
Babichev, Andrey ;
Blokhin, Sergey ;
Kolodeznyi, Evgenii ;
Karachinsky, Leonid ;
Novikov, Innokenty ;
Egorov, Anton ;
Tian, Si-Cong ;
Bimberg, Dieter .
PHOTONICS, 2023, 10 (03)
[4]   Nonreciprocal lasing in topological cavities of arbitrary geometries [J].
Bahari, Babak ;
Ndao, Abdoulaye ;
Vallini, Felipe ;
El Amili, Abdelkrim ;
Fainman, Yeshaiahu ;
Kante, Boubacar .
SCIENCE, 2017, 358 (6363) :636-639
[5]   Design optimization for bright electrically-driven quantum dot single-photon sources emitting in telecom O-band [J].
Blokhin, S. A. ;
Bobrov, M. A. ;
Maleev, N. A. ;
Donges, J. N. ;
Bremer, L. ;
Blokhin, A. A. ;
Vasil'ev, A. P. ;
Kuzmenkov, A. G. ;
Kolodeznyi, E. S. ;
Shchukin, V. A. ;
Ledentsov, N. N. ;
Reitzenstein, S. ;
Ustinov, V. M. .
OPTICS EXPRESS, 2021, 29 (05) :6582-6598
[6]   Electrically driven high-Q quantum dot-micropillar cavities [J].
Boeckler, C. ;
Reitzenstein, S. ;
Kistner, C. ;
Debusmann, R. ;
Loeffler, A. ;
Kida, T. ;
Hoefling, S. ;
Forchel, A. ;
Grenouillet, L. ;
Claudon, J. ;
Gerard, J. M. .
APPLIED PHYSICS LETTERS, 2008, 92 (09)
[7]   Physics and Applications of High-β Micro- and Nanolasers [J].
Deng, Hui ;
Lippi, Gian Luca ;
Mork, Jesper ;
Wiersig, Jan ;
Reitzenstein, Stephan .
ADVANCED OPTICAL MATERIALS, 2021, 9 (19)
[8]   Single-photon emitting diode based on a quantum dot in a micro-pillar [J].
Farrow, T. ;
See, P. ;
Bennett, A. J. ;
Ward, M. B. ;
Atkinson, P. ;
Cooper, K. ;
Ellis, D. J. P. ;
Unitt, D. C. ;
Ritchie, D. A. ;
Shields, A. J. .
NANOTECHNOLOGY, 2008, 19 (34)
[9]   High-β lasing in photonic-defect semiconductor-dielectric hybrid microresonators with embedded InGaAs quantum dots [J].
Gaur, Kartik ;
Shih, Ching-Wen ;
Limame, Imad ;
Koulas-Simos, Aris ;
Heermeier, Niels ;
Palekar, Chirag C. ;
Tripathi, Sarthak ;
Rodt, Sven ;
Reitzenstein, Stephan .
APPLIED PHYSICS LETTERS, 2024, 124 (04)
[10]   Spin-Lasing in Bimodal Quantum Dot Micropillar Cavities [J].
Heermeier, Niels ;
Heuser, Tobias ;
Grosse, Jan ;
Jung, Natalie ;
Kaganskiy, Arsenty ;
Lindemann, Markus ;
Gerhardt, Nils C. ;
Hofmann, Martin R. ;
Reitzenstein, Stephan .
LASER & PHOTONICS REVIEWS, 2022, 16 (04)