• Chinese Optics Letters
  • Vol. 21, Issue 1, 011402 (2023)
Wenfu Yu1、2, Xuyi Zhao1、2, Shixian Han1、2, Antian Du3, Ruotao Liu1、2, Chunfang Cao1, Jinyi Yan1, Jin Yang1, Hua Huang1, Hailong Wang3, and Qian Gong1、2、*
Author Affiliations
  • 1Key Laboratory of Terahertz Solid State Technology, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai 200050, China
  • 2Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
  • 3School of Physics and Physical Engineering, Shandong Provincial Key Laboratory of Laser Polarization and Information Technology, Qufu Normal University, Qufu 273165, China
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    DOI: 10.3788/COL202321.011402 Cite this Article Set citation alerts
    Wenfu Yu, Xuyi Zhao, Shixian Han, Antian Du, Ruotao Liu, Chunfang Cao, Jinyi Yan, Jin Yang, Hua Huang, Hailong Wang, Qian Gong. InAs/GaAs quantum dot laterally coupled distributed feedback lasers at 1.3 μm[J]. Chinese Optics Letters, 2023, 21(1): 011402 Copy Citation Text show less
    References

    [1] B. Dagens, J. Renaudier, R. Brenot, A. Accard, F. van Dijk, D. Make, O. Le Gouezigou, J.-G. Provost, F. Poingt, J. Landreau, O. Drisse, E. Derouin, B. Rousseau, F. Pommereau, G.-H. Duan. Recent advances on InAs/InP quantum dash based semiconductor lasers and optical amplifiers operating at 1.55 µm. IEEE J. Sel. Top. Quantum Electron., 13, 111(2007).

    [2] C. P. Joseph. Fiber Optic Communications(2005).

    [3] Q. Li, X. Wang, Z. Zhang, H. Chen, Y. Huang, C. Hou, J. Wang, R. Zhang, J. Ning, J. Min, C. Zheng. Development of modulation p-doped 1310 nm InAs/GaAs quantum dot laser materials and ultrashort cavity Fabry-Perot and distributed-feedback laser diodes. ACS Photonics, 5, 1084(2018).

    [4] G. Liu, A. Stintz, H. Li, K. Malloy, L. Lester. Extremely low room-temperature threshold current density diode lasers using InAs dots in In0.15Ga0.85As quantum well. Electron. Lett., 35, 1163(1999).

    [5] M. Asada, Y. Miyamoto, Y. Suematsu. Gain and the threshold of three-dimensional quantum-box lasers. IEEE J. Quantum Electron., 22, 1915(1986).

    [6] O. B. Shchekin, D. G. Deppe. 1.3 µm InAs quantum dot laser with To = 161 K from 0 to 80°C. Appl. Phys. Lett., 80, 3277(2002).

    [7] Z. T. Mi, J. Yang, P. Bhattacharya, G. X. Qin, Z. Q. Ma. High-performance quantum dot lasers and integrated optoelectronics on Si. Proc. IEEE, 97, 1239(2009).

    [8] K. Nishi, K. Takemasa, M. Sugawara, Y. Arakawa. Development of quantum dot lasers for data-com and silicon photonics applications. IEEE J. Sel. Top. Quantum Electron., 23, 1901007(2017).

    [9] A. Y. Liu, C. Zhang, J. Norman, A. Snyder, D. Lubyshev, J. M. Fastenau, A. W. K. Liu, A. C. Gossard, J. E. Bowers. High performance continuous wave 1.3 µm quantum dot lasers on silicon. Appl. Phys. Lett., 104, 041104(2014).

    [10] Y. Wang, S. Chen, Y. Yu, L. Zhou, L. Liu, C. Yang, M. Liao, M. Tang, Z. Liu, J. Wu, W. Li, I. Ross, A. J. Seeds, H. Liu, S. Yu. Monolithic quantum-dot distributed feedback laser array on silicon. Optica, 5, 528(2018).

    [11] Y. Qiu, P. Gogna. Laterally coupled InAs quantum dot distributed feedback lasers at 1.3 µm. IEEE-NANO(2003).

    [12] S. R. Jain, M. N. Sysak, G. Kurczveil, J. E. Bowers. Integrated hybrid silicon DFB laser-EAM array using quantum well intermixing. Opt. Express, 19, 13692(2011).

    [13] M. J. Wallace, Q. Lu, W.-H. Guo, J. F. Donegan. Design optimization for semiconductor lasers with high-order surface gratings having multiple periods. J. Light. Technol., 36, 5121(2018).

    [14] C.-A. Yang, S.-W. Xie, Y. Zhang, J.-M. Shang, S.-S. Huang, Y. Yuan, F.-H. Shao, Y. Zhang, Y.-Q. Xu, Z.-C. Niu. High-power, high-spectral-purity GaSb-based laterally coupled distributed feedback lasers with metal gratings emitting at 2 µm. Appl. Phys. Lett., 114, 021102(2019).

    [15] H. Kogelnik, C. V. Shank. Coupled-wave theory of distributed feedback lasers. J. Appl. Phys., 43, 2327(1972).

    [16] W. Streifer, D. Scifres, R. Burnham. Coupling coefficients for distributed feedback single- and double-heterostructure diode lasers. IEEE J. Quantum Elect., 11, 867(1975).

    [17] K. Papatryfonos, D. Saladukha, K. Merghem, S. Joshi, F. Lelarge, S. Bouchoule, D. Kazazis, S. Guilet, L. Le Gratiet, T. J. Ochalski, G. Huyet, A. Martinez, A. Ramdane. Laterally coupled distributed feedback lasers emitting at 2 µm with quantum dash active region and high-duty-cycle etched semiconductor gratings. J. Appl. Phys., 121, 053101(2017).

    [18] B. Dong, J. Duan, H. Huang, J. C. Norman, K. Nishi, K. Takemasa, M. Sugawara, J. E. Bowers, F. Grillot. Dynamic performance and reflection sensitivity of quantum dot distributed feedback lasers with large optical mismatch. Photonics. Res., 9, 1550(2021).

    [19] L. Jiang, L. V. Asryan. Excited-state-mediated capture of carriers into the ground state and the saturation of optical power in quantum-dot lasers. IEEE Photon. Technol. Lett., 18, 2611(2006).

    [20] L. V. Asryan, R. A. Suris. Spatial hole burning and multimode generation threshold in quantum-dot lasers. Appl. Phys. Lett., 74, 1215(1999).

    [21] J. Wang, C. Z. Sun, B. Xiong, Y. Luo, Z. B. Hao, Y. J. Han, L. Wang, H. T. Li, J. D. Yu. 1.3 µm laterally coupled distributed feedback laser with high side mode suppression ratio and bandwidth. Asia Communications and Photonics Conference (ACPC), T3D.3(2019).

    [22] R. Millett, K. Dridi, A. Benhsaien, H. Schriemer, K. Hinzer, T. Hall. Fabrication-tolerant 1310 nm laterally coupled distributed feedback lasers with high side mode suppression ratios. Photonics Nanostruct., 9, 111(2011).

    Data from CrossRef

    [1] Rui Ming, Jun Wang, Shuaicheng Liu, Qing Ge, Feng Lin, Hao Zhai, Bojie Ma, Zhuoliang Liu, Hao Liu, Yiming Bai, Shiwei Cai, Yongqing Huang, Xiaomin Ren. Design of distributed feedback lasers grown on Si using time-domain traveling wave model combined with mode refractive index method. Laser Physics, 33, 095801(2023).

    Wenfu Yu, Xuyi Zhao, Shixian Han, Antian Du, Ruotao Liu, Chunfang Cao, Jinyi Yan, Jin Yang, Hua Huang, Hailong Wang, Qian Gong. InAs/GaAs quantum dot laterally coupled distributed feedback lasers at 1.3 μm[J]. Chinese Optics Letters, 2023, 21(1): 011402
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