Uncooled 100-GBaud Directly Modulated Membrane Lasers on SiC Substrate

被引:8
作者
Yamaoka, Suguru [1 ]
Diamantopoulos, Nikolaos-Panteleimon [1 ]
Nishi, Hidetaka [1 ]
Fujii, Takuro [1 ]
Takeda, Koji [1 ]
Hiraki, Tatsurou [1 ]
Kanazawa, Shigeru [1 ,2 ]
Kakitsuka, Takaaki [1 ]
Matsuo, Shinji [1 ]
机构
[1] NTT Corp, NTT Device Technol Labs, Atsugi, Kanagawa 2430198, Japan
[2] NTT Corp, NTT Device Innovat Ctr, Atsugi, Kanagawa 2430198, Japan
关键词
Direct modulation; optical communication; optical feedback; semiconductor lasers; SiC; DFB LASERS; BANDWIDTH; GB/S; GHZ;
D O I
10.1109/JLT.2023.3239614
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
We investigate the temperature dependence of the dynamic characteristics of a 1.3-mu m InGaAlAs-based directly modulated membrane laser on a SiC substrate. The laser is fabricated by combining direct wafer bonding of SiC and InP substrates using a very thin (similar to 10 nm) oxide layer and epitaxial regrowth of a membrane InP layer on the InP/SiC template. The membrane laser structure on SiC with a high thermal conductivity (490Wm(-1)K(-1)) and a moderate refractive index (similar to 2.6) ensures both high thermal dissipation and a large optical confinement factor in the active region, which are ideal for increasing the relaxation oscillation frequency even at high operating temperatures. We further leverage the optical feedback effect from the output facet of a waveguide to enhance the bandwidth and enable signal modulation at 100 GBaud and beyond. Owing to the high relaxation oscillation frequency and the photon-photon resonance effect, it is possible to obtain a flat frequency response at temperatures ranging from 25 to 85 degrees C. The fabricated membrane laser on SiC with an active-region length of 50 mu m exhibits 3 dB bandwidths of >110, 97, and 74 GHz at 25, 55, and 85 degrees C, respectively. We successfully demonstrate 2-km transmissions of 100-Gbit/sNRZsignals under uncooled conditions (25 to 85 degrees C). Furthermore, the laser is capable of 112-Gbit/s NRZ modulation at 85 degrees C.
引用
收藏
页码:3389 / 3396
页数:8
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