1.3 µm InAs/GaAs Quantum‐Dot Lasers with p‐Type, n‐Type, and Co‐Doped Modulation

Author:

Deng Huiwen1,Park Jae‐Seong1,Yu Xuezhe1,Liu Zizhuo1,Jia Hui1,Zeng Haotian1,Yang Junjie1,Pan Shujie1,Chen Siming1,Seeds Alwyn1,Tang Mingchu1ORCID,Smowton Peter2,Liu Huiyun1

Affiliation:

1. Department of Electronic and Electrical Engineering University College London Torrington Place London WC1E 7JE UK

2. School of Physics and Astronomy Cardiff University Cardiff CF10 3AT UK

Abstract

AbstractTo further enhance the performance and understand the mechanism of InAs quantum dot (QD) laser under high temperature, both theoretically and experimentally it is investigated, the effects of the technique of the combination of direct n‐type doping and modulation p‐type doping, namely co‐doping, in the active region for a wide temperature range over 165 °C. Through the comparison of co‐doped, modulation p‐type doped, direct n‐type doped, and undoped QD lasers, it reveals that the co‐doping technique provides a significantly reduced threshold current density across the whole temperature range and robust high‐temperature operation. Furthermore, it is also observed that the effectiveness of co‐doping in suppressing round‐state quenching is comparable to that of p‐doping. The improvements in the doping strategies are also revealed through the rate equation simulation of the lasers.

Funder

Engineering and Physical Sciences Research Council

Publisher

Wiley

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