• Semiconductor Optoelectronics
  • Vol. 45, Issue 1, 84 (2024)
LIN Qinghua1,2, ZHANG Dongliang1,3, WANG Rui1,2, ZHANG Chengcheng1,2..., LUO Mingxin1,2 and ZHU Lianqing1,2,3|Show fewer author(s)
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    DOI: 10.16818/j.issn1001-5868.2023092401 Cite this Article
    LIN Qinghua, ZHANG Dongliang, WANG Rui, ZHANG Chengcheng, LUO Mingxin, ZHU Lianqing. Thermal Simulation and Analysis of Quantum Cascade Laser[J]. Semiconductor Optoelectronics, 2024, 45(1): 84 Copy Citation Text show less
    References

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    [6] Bai Y, Bandyopadhyay N, Tsao S, et al. Room temperature quantum cascade lasers with 27% wall plug efficiency[J]. Appl. Phys. Lett., 2011, 98(18): 181102.

    [7] Fei T, Zhai S, Zhang J, et al. 3W continuous-wave room temperature quantum cascade laser grown by metal-organic chemical vapor deposition[J]. Photonics, 2023, 10(1): 47.

    [8] Razeghi M, Slivken S, Bai Y, et al. High power quantum cascade lasers[J]. New J. of Physics, 2009, 11(12): 125017.

    [9] Wang F, Slivken S, Wu D, et al. Room temperature quantum cascade lasers with 22% wall plug efficiency in continuous-wave operation[J]. Opt. Express, 2020, 28(12): 17532-17538.

    [10] Fei T, Zhai S, Zhang J, et al. High power λ~8.5μm quantum cascade laser grown by MOCVD operating continuous-wave up to 408K[J]. J. of Semiconductors, 2021, 42(11): 112301.

    [11] Oresick K, Kirch J, Mawst L, et al. Highly efficient~8μm-emitting, step-taper active-region quantum cascade lasers[J]. AIP Advances, 2021, 11(2): 025004.

    [12] Sun Y, Yin R, Zhang J, et al. High-performance quantum cascade lasers at λ~9μm grown by MOCVD[J]. Opt. Express, 2022, 30(21): 37272-37280.

    [13] Zhou W, Lu Q Y, Wu D H, et al. High-power, continuous-wave, phase-locked quantum cascade laser arrays emitting at 8μm[J]. Opt. Express, 2019, 27(11): 15776-15785.

    LIN Qinghua, ZHANG Dongliang, WANG Rui, ZHANG Chengcheng, LUO Mingxin, ZHU Lianqing. Thermal Simulation and Analysis of Quantum Cascade Laser[J]. Semiconductor Optoelectronics, 2024, 45(1): 84
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