Rabi oscillation generation in the microring resonator system with double-series ring resonators
CSTR:
Author:
Affiliation:

1. Institute of Advance Photonics Science, Nanotechnology Research Alliance, Universiti Teknologi Malaysia, Johor Bahru 81300, Malaysia ;;2. Department of Mathematics, Universiti Teknologi Malaysia, Johor Bahru 81310, Malaysia;;3. Advanced Studies Center, Faculty of Science, King Mongkut’s Institute of Technology Ladkrabang, Bangkok 10520, Thailand

  • Article
  • | |
  • Metrics
  • |
  • Reference [25]
  • |
  • Related [20]
  • | | |
  • Comments
    Abstract:

    In this paper, a microring resonator (MRR) system using double-series ring resonators is proposed to generate and investigate the Rabi oscillations. The system is made up of silicon-on-insulator and attached to bus waveguide which is used as propagation and oscillation medium. The scattering matrix method is employed to determine the output signal intensity which acts as the input source between two-level Rabi oscillation states, where the increase of Rabi oscillation frequency with time is obtained at the resonant state. The population probability of the excited state is higher and unstable at the optical resonant state due to the nonlinear spontaneous emission process. The enhanced spontaneous emission can be managed by the atom (photon) excitation, which can be useful for atomic related sensors and single-photon source applications.

    Reference
    [1]Chremmos I., Uzunoglu N. K. and Schwelb O., Photonic Microresonator Research and Applications, New York:Springer, 2010.
    [2]Sumetsky M., Windeler R. S., Dulashko Y. and Fan X., Optics Express 15, 14376 (2007).
    [3]Rabus D. G., Bian Z. X. and Shakouri A., IEEE Journal of Selected Topics in Quantum Electronics 13, 1249 (2007).
    [4]Fietz C. and Shvets G., Optics Letters 32, 1683 (2007).
    [5]White I. M., Gohring J., Sun Y., Yang G., Lacey S. and Fan X., Applied Physics Letters 91, 2411041 (2007).
    [6]Glomglome S., Srithanachai I., Teeka C., Mitatha S., Niemcharoen S. and Yupapin P.P., Optics and Laser
    Technology 44, 1294 (2012).
    [7]Fan G, Li Y, Hu C, Lei L, Zhao D, Li H and Zhen Z., Optics & Laser Technology 63, 62 (2014).
    [8]Nitkowski A., Baeumner A. and Lipson M., Biomedical Optics Express 2, 271 (2011).
    [9]Gerry C. and Knight P., Introductory Quantum Optics, Cambridge:Cambridge University Press, 2005.
    [10]Fox M., Quantum Optics:An Introduction, New York:Oxford University Press, 2006.
    [11]Ma C. S., Wang X. Y., Li D. L. and Qin Z. K., Optics and Laser Technology 39, 1183 (2007).
    [12]Shih C. T. and Chao S., Optics Express 17, 7756 (2009).
    [13]Ciminelli C., Dell''Olio F., Conteduca D., Campanella C. M. and Armenise M. N., Optics and Laser Technology 59, 60 (2014).
    [14]Rukhlenko I. D., Premaratne M. and Agrawal G. P., Optics Letters 35, 55 (2010).
    [15]Eason R. W. and Miller A., Nonlinear Optics in Signal Processing, Springer, 1993.
    [16]Yupapin P. P. and Pornsuwancharoen N., IEEE Photonics Technology Letters 21, 404 (2009).
    [17]Phatharaworamet T., Teeka C., Jomtarak R., Mitatha S. and Yupapin P. P., Journal of Lightwave Technology 28, 2804 (2010).
    [18]Heebner J., Grover R., Ibrahim T. and Ibrahim T. A., Optical Microresonators:Theory, Fabrication, and Applications, London:Springer, 2008.
    [19]Manjunatha K. B., Dileep R., Umesh G. and Bhat B. R., Optics and Laser Technology 52, 103 (2013).
    [20]Bahadoran M., Ali J. and Yupapin P. P., Applied Optics 52, 2866 (2013).
    [21]Bahadoran M., Ali J. and Yupapin P. P., IEEE Photonics Technology Letters 25, 1470 (2013).
    [22]Maywar D. N., Agrawal G. P. and Nakano Y., Journal of the Optical Society of America B:Optical Physics 18, 1003 (2001).
    [23]Hogan J. M., Johnson D. M. S., Dickerson S., Kovachy T., Sugarbaker A., Chiow S. W., Graham P. W., Kasevich M. A., Saif B., Rajendran S., Bouyer P., Seery B. D., Feinberg L. and Keski-Kuha R., General Relativity and Gravitation 43, 1953 (2011).
    [24]Vahala K. J., Nature 424, 839 (2003).
    Cited by
    Comments
    Comments
    分享到微博
    Submit
Get Citation

Ahmad Fakhrurrazi Ahmad Noorden, Kashif Chaudhary, Mahdi Bahadoran, Muhammad Safwan Aziz, Muhammad Arif Jalil, Ong Chee Tiong, Jalil Ali, and Preecha Yupapin. Rabi oscillation generation in the microring resonator system with double-series ring resonators[J]. Optoelectronics Letters,2015,11(5):342-347

Copy
Share
Article Metrics
  • Abstract:4275
  • PDF: 0
  • HTML: 0
  • Cited by: 0
History
  • Received:May 14,2015
  • Online: November 26,2015
Article QR Code