• Optoelectronics Letters
  • Vol. 15, Issue 4, 317 (2019)
Dey Shuvra*, De Paromita, and Mukhopadhyay Sourangshu
Author Affiliations
  • Department of Physics, The University of Burdwan, Burdwan, 713104, India
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    DOI: 10.1007/s11801-019-8170-x Cite this Article
    Shuvra Dey, Paromita De, Sourangshu Mukhopadhyay. An all-optical implementation of Fredkin gate using Kerr effect[J]. Optoelectronics Letters, 2019, 15(4): 317 Copy Citation Text show less
    References

    [1] D. E. Chang, V. Vuletic and M. D. Lukin, Nature Photonics 8, 685 (2014).

         D. E. Chang, V. Vuletic and M. D. Lukin, Nature Photonics 8, 685 (2014).

    [2] T. D. Ladd, F. Jelezko, R. Laflamme, Y. Nakamura, C. Monroe and J. L. O’Brien, Nature 464, 45 (2010).

         T. D. Ladd, F. Jelezko, R. Laflamme, Y. Nakamura, C. Monroe and J. L. O’Brien, Nature 464, 45 (2010).

    [3] A. Laing, A. Peruzzo, A. Politi, M. R. Verde, M. Haider, T. C. Ralph, M. G. Thompson and J. L. O’Brien, Appl. Phys. Lett. 97, 211109 (2010).

         A. Laing, A. Peruzzo, A. Politi, M. R. Verde, M. Haider, T. C. Ralph, M. G. Thompson and J. L. O’Brien, Appl. Phys. Lett. 97, 211109 (2010).

    [4] R. Barends, A. Shabani and J. M. Martinis, Nature 534, 222 (2016).

         R. Barends, A. Shabani and J. M. Martinis, Nature 534, 222 (2016).

    [5] M. Howard, J. Wallman, V. Veitch and J. Emerson, Nature 510, 351 (2014).

         M. Howard, J. Wallman, V. Veitch and J. Emerson, Nature 510, 351 (2014).

    [6] D. Samanta and S. Mukhopadhyay, Optics Communications 281, 4851 (2008).

         D. Samanta and S. Mukhopadhyay, Optics Communications 281, 4851 (2008).

    [7] S. Dey and S. Mukhopadhyay, Journal of Nonlinear Optical Physics & Materials 25, 1650012 (2016).

         S. Dey and S. Mukhopadhyay, Journal of Nonlinear Optical Physics & Materials 25, 1650012 (2016).

    [8] A. Pal and S. Mukhopadhyay, Optics and Laser Technology 44, 281 (2012).

         A. Pal and S. Mukhopadhyay, Optics and Laser Technology 44, 281 (2012).

    [9] S. Dey and S. Mukhopadhyay, Electronics Letters 53, 1375 (2017).

         S. Dey and S. Mukhopadhyay, Electronics Letters 53, 1375 (2017).

    [10] B. Chakraborty and S. Mukhopadhyay, Opt. Eng. 48, 035201 (2009).

         B. Chakraborty and S. Mukhopadhyay, Opt. Eng. 48, 035201 (2009).

    [11] S. Dey and S. Mukhopadhyay, IET Optoelectronics 12, 176 (2018).

         S. Dey and S. Mukhopadhyay, IET Optoelectronics 12, 176 (2018).

    [12] N. Mitra and S. Mukhopadhyay, Optoelectronics Letters 5, 101 (2009).

         N. Mitra and S. Mukhopadhyay, Optoelectronics Letters 5, 101 (2009).

    [13] K. Roy Chowdhury and S. Mukhopadhyay, Optoelectronics Letters 4, 447 (2008).

         K. Roy Chowdhury and S. Mukhopadhyay, Optoelectronics Letters 4, 447 (2008).

    [14] E. Dimitriadou and K.E. Zoiros, Optics & Laser Technology 44, 600 (2012).

         E. Dimitriadou and K.E. Zoiros, Optics & Laser Technology 44, 600 (2012).

    [15] M. A. Pooley, D. J. P. Ellis, R. B. Patel, A. J. Bennett, K. H. A. Chan, I. Farrer, D. A. Ritchie and A. J. Shields, Appl. Phys. Lett. 100, 211103 (2012).

         M. A. Pooley, D. J. P. Ellis, R. B. Patel, A. J. Bennett, K. H. A. Chan, I. Farrer, D. A. Ritchie and A. J. Shields, Appl. Phys. Lett. 100, 211103 (2012).

    [16] M. Soeken, D. M. Miller and R. Drechsler, Physical Review A 88, 042322 (2013).

         M. Soeken, D. M. Miller and R. Drechsler, Physical Review A 88, 042322 (2013).

    [17] H. Kim, R. Bose, T. C. Shen, G. S. Solomon and E. Waks, Nature Photonics 7, 373 (2013).

         H. Kim, R. Bose, T. C. Shen, G. S. Solomon and E. Waks, Nature Photonics 7, 373 (2013).

    [18] A. Srivastava and S. Medhekar, Optics & Laser Technology 43, 29 (2011).

         A. Srivastava and S. Medhekar, Optics & Laser Technology 43, 29 (2011).

    [19] R. Forsati, S. V. Ebrahimi, K. Navi, E. Mohajerani and H. Jashnsaz, Optics & Laser Technology 45, 565 (2013).

         R. Forsati, S. V. Ebrahimi, K. Navi, E. Mohajerani and H. Jashnsaz, Optics & Laser Technology 45, 565 (2013).

    [21] J. Hu, Y.P. Huang and P. Kumar, Optics Letters 38, 522 (2013).

         J. Hu, Y.P. Huang and P. Kumar, Optics Letters 38, 522 (2013).

    [22] J. S. Wenzler, T. Dunn, T. Toffoli and P. Mohanty, Nano Letters 14, 89 (2014).

         J. S. Wenzler, T. Dunn, T. Toffoli and P. Mohanty, Nano Letters 14, 89 (2014).

    [23] Z. C. Shi, Y. Xia and J. Song, Quantum Inf. Comput. 12, 0215 (2012).

         Z. C. Shi, Y. Xia and J. Song, Quantum Inf. Comput. 12, 0215 (2012).

    [24] R. B. Patel, J. Ho, F. Ferreyroll, T. C. Ralph and G. J. Prydel, Science Advances 2, e1501531 (2016).

         R. B. Patel, J. Ho, F. Ferreyroll, T. C. Ralph and G. J. Prydel, Science Advances 2, e1501531 (2016).

    Shuvra Dey, Paromita De, Sourangshu Mukhopadhyay. An all-optical implementation of Fredkin gate using Kerr effect[J]. Optoelectronics Letters, 2019, 15(4): 317
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