• Photonics Research
  • Vol. 5, Issue 6, 695 (2017)
Min Tang, Yong-Zhen Huang*, Yue-De Yang, Hai-Zhong Weng, and Zhi-Xiong Xiao
Author Affiliations
  • State Key Laboratory on Integrated Optoelectronics, Institute of Semiconductors, University of Chinese Academy of Sciences, Chinese Academy of Sciences, Beijing 100083, China
  • show less
    DOI: 10.1364/PRJ.5.000695 Cite this Article Set citation alerts
    Min Tang, Yong-Zhen Huang, Yue-De Yang, Hai-Zhong Weng, Zhi-Xiong Xiao. Variable-curvature microresonators for dual-wavelength lasing[J]. Photonics Research, 2017, 5(6): 695 Copy Citation Text show less
    References

    [1] K. J. Vahala. Optical microcavities. Nature, 424, 839-846(2003).

    [2] G. Chern, H. Tureci, A. D. Stone, R. Chang, M. Kneissl, N. Johnson. Unidirectional lasing from InGaN multiple-quantum-well spiral-shaped micropillars. Appl. Phys. Lett., 83, 1710-1712(2003).

    [3] J. Unterhinninghofen, J. Wiersig, M. Hentschel. Goos-Hänchen shift and localization of optical modes in deformed microcavities. Phys. Rev. E, 78, 016201(2008).

    [4] H. E. Tureci, H. Schwefel, A. D. Stone, E. Narimanov. Gaussian-optical approach to stable periodic orbit resonances of partially chaotic dielectric micro-cavities. Opt. Express, 10, 752-776(2002).

    [5] C. Gmachl, F. Capasso, E. Narimanov, J. U. Nöckel, A. D. Stone, J. Faist, D. L. Sivco, A. Y. Cho. High-power directional emission from microlasers with chaotic resonators. Science, 280, 1556-1564(1998).

    [6] J. Wiersig, M. Hentschel. Combining directional light output and ultralow loss in deformed microdisks. Phys. Rev. Lett., 100, 033901(2008).

    [7] X. M. Lv, L. X. Zou, J. D. Lin, Y. Z. Huang, Y. D. Yang, Q. F. Yao, J. L. Xiao, Y. Du. Unidirectional-emission single-mode AlGalnAs-InP microcylinder lasers. IEEE Photon. Technol. Lett., 24, 963-965(2012).

    [8] L. X. Zou, X. M. Lv, Y. Z. Huang, H. Long, J. L. Xiao, Q. F. Yao, J. D. Lin, Y. Du. Mode analysis for unidirectional emission AlGaInAs/InP octagonal resonator microlasers. IEEE J. Sel. Top. Quantum Electron., 19, 1501808(2013).

    [9] X. W. Ma, X. M. Lv, Y. Z. Huang, Y. D. Yang, J. L. Xiao, Y. Du. Mode characteristics for unidirectional-emission microring resonator lasers. J. Opt. Soc. Am. B, 31, 2773-2778(2014).

    [10] H. Z. Weng, Y. Z. Huang, Y. D. Yang, X. W. Ma, J. L. Xiao, Y. Du. Mode Q factor and lasing spectrum controls for deformed square resonator microlasers with circular sides. Phys. Rev. A, 95, 013833(2017).

    [11] Z. X. Xiao, Y. Z. Huang, Y. D. Yang, J. L. Xiao, X. W. Ma. Single-mode unidirectional-emission circular-side hexagonal resonator microlasers. Opt. Lett., 42, 1309-1312(2017).

    [12] M. Osowski, R. Lammert, J. Coleman. A dual-wavelength source with monolithically integrated electroabsorption modulators and Y-junction coupler by selective-area MOCVD. IEEE Photon. Technol. Lett., 9, 158-160(1997).

    [13] P. Pellandini, R. Stanley, R. Houdre, U. Oesterle, M. Ilegems, C. Weisbuch. Dual-wavelength laser emission from a coupled semiconductor microcavity. Appl. Phys. Lett., 71, 864-866(1997).

    [14] M. Brunner, K. Gulden, R. Hovel, M. Moser, J. Carlin, R. Stanley, M. Ilegems. Continuous-wave dual-wavelength lasing in a two-section vertical-cavity laser. IEEE Photon. Technol. Lett., 12, 1316-1318(2000).

    [15] N. Kim, J. Shin, E. Sim, C. W. Lee, D. S. Yee, M. Y. Jeon, Y. Jang, K. H. Park. Monolithic dual-mode distributed feedback semiconductor laser for tunable continuous-wave terahertz generation. Opt. Express, 17, 13851-13859(2009).

    [16] X. Liu, X. Yang, F. Lu, J. Ng, X. Zhou, C. Lu. Stable and uniform dual-wavelength erbium-doped fiber laser based on fiber Bragg gratings and photonic crystal fiber. Opt. Express, 13, 142-147(2005).

    [17] Y. Yao, X. Chen, Y. Dai, S. Xie. Dual-wavelength erbium-doped fiber laser with a simple linear cavity and its application in microwave generation. IEEE Photon. Technol. Lett., 18, 187-189(2006).

    [18] H. Long, Y. Z. Huang, X. W. Ma, Y. D. Yang, J. L. Xiao, L. X. Zou, B. W. Liu. Dual-transverse-mode microsquare lasers with tunable wavelength interval. Opt. Lett., 40, 3548-3551(2015).

    [19] M. Hentschel, H. Schomerus, R. Schubert. Husimi functions at dielectric interfaces: Inside-outside duality for optical systems and beyond. Europhys. Lett., 62, 636-642(2003).

    [20] L. Chusseau, F. Philippe, P. Viktorovitch, X. Letartre. Mode competition in a dual-mode quantum-dot semiconductor microlaser. Phy. Rev. A, 88, 015803(2013).

    [21] M. Yamada. Transverse and longitudinal mode control in semiconductor injection lasers. IEEE J. Quantum Electron., 19, 1365-1380(1983).

    [22] M. Tani, O. Morikawa, S. Matsuura, M. Hangyo. Generation of terahertz radiation by photomixing with dual- and multiple-mode lasers. Semicond. Sci. Technol., 20, S151-S163(2005).

    [23] M. Y. Jeon, N. Kim, J. Shin, J. S. Jeong, S.-P. Han, C. W. Lee, Y. A. Leem, D.-S. Yee, H. S. Chun, K. H. Park. Widely tunable dual-wavelength Er 3+-doped fiber laser for tunable continuous-wave terahertz radiation. Opt. Express, 18, 12291-12297(2010).

    [24] S. Hoffmann, M. Hofmann, M. Kira, S. Koch. Two-colour diode lasers for generation of THz radiation. Semicond. Sci. Technol., 20, S205-S210(2005).

    [25] S. Osborne, S. O’Brien, E. O’Reilly, P. Huggard, B. Ellison. Generation of CW 0.5  THz radiation by photomixing the output of a two-colour 1.49  μm Fabry-Perot diode laser. Electron. Lett., 44, 296-298(2008).

    [26] A. Klehr, J. Fricke, A. Knauer, G. Erbert, M. Walther, R. Wilk, M. Mikulics, M. Koch. High-power monolithic two-mode DFB laser diodes for the generation of THz radiation. IEEE J. Sel. Top. Quantum Electron., 14, 289-294(2008).

    [27] R. Price, V. Verma, K. Tobin, V. Elarde, J. Coleman. Y-branch surface-etched distributed Bragg reflector lasers at 850  nm for optical heterodyning. IEEE Photon. Technol. Lett., 19, 1610-1612(2007).

    CLP Journals

    [1] Yue-De Yang, Min Tang, Fu-Li Wang, Zhi-Xiong Xiao, Jin-Long Xiao, Yong-Zhen Huang. Whispering-gallery mode hexagonal micro-/nanocavity lasers [Invited][J]. Photonics Research, 2019, 7(5): 594

    Min Tang, Yong-Zhen Huang, Yue-De Yang, Hai-Zhong Weng, Zhi-Xiong Xiao. Variable-curvature microresonators for dual-wavelength lasing[J]. Photonics Research, 2017, 5(6): 695
    Download Citation