W. Leoński, A. Miranowicz (2004), Kerr nonlinear coupler and entanglement, J. Opt. B 6, S37. | |
[22] | A. Kowalewska-Kudłaszyk, W. Leoński, J. Peřina Jr. (2011), Photon- number entangled states generated in Kerr media with optical parametric pumping, Phys. Rev. A 83, 052326. |
[23] | A. Kowalewska-Kudłaszyk, W. Leoński (2006), Finite-dimensional states and entanglement generation for a nonlinear coupler, Phys. Rev. A 73, 042318. |
[24] | Z. Zhang, M.O. Scully, G.S. Agarwal (2019), Quantum entanglement between two magnon modes via Kerr nonlinearitydriven far from equilibrium, Phys. Rev. Resaerch 1, 023021. |
[25] | J. K. Kalaga, A. Kowalewska-Kudłaszyk, M. W. Jarosik, R. Szczȩśniak, W. Leoński (2019), Enhancement of the entanglement generation via randomly perturbed series of external pulses in a nonlinear Bose- Hubbard dimer, Nonlinear Dynamics 97, 1619. |
[26] | Z.B. Yang, J.S. Liu, H. Jin, Q.H. Zhu, A.D. Zhu, H.Y. Liu, Y. Ming, R.C. Yang (2020), Entanglement enhanced by Kerr nonlinearity in a cavity- optomagnonics system, Optics Express 28, 31862. |
[27] | K.M. Birnbaum, A. Boca, R. Miller, A.D. Boozer, T. E. Northup, H.J. Kimble (2005), Photon blockade in an optical cavity with one trapped atom, Nature 436, 87. |
[28] | A. Miranowicz, J. Bajer, M. Paprzycka, Y. Liu, A.M. Zagoskin, F. Nori (2014), State-dependent photon blockade via quantum-reservoir engineering, Phys. Rev. A 90, 033831. |
[29] | Y. Liu, A. Miranowicz, Y.B. Gao, J. Bajer, C.P. Sun, F. Nori (2010), Qubit-induced phonon blockade as a signature of quantum behavior in nanomechanical resonators, Phys. Rev. A 82, 032101. |
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N. Didier, S. Pugnetti, Y.M. Blanter, R. Fazio (2011), Detecting phonon blockade with photons, Phys. Rev. B 84, 054503. | |
[31] | Li-hui Sun, Gao-xiang Li, Z Ficek (2012), Coherence and entanglement in a nanomechanical cavity, Phys.Rev. A 85, 022327. |
[32] | Q. Ho Quang, S. Vu Ngoc, T. Nguyen Thi Thanh, H. Nguyen Van (2010), Nonlinear coupler for optical fiber Mach-Zehnder interferometer, Communications in Physics 20, 45. |
[33] | Q. Ho Quang, S. Vu Ngoc, T. Nguyen Thi Thanh, H. Nguyen Van (2012), Using a nonlinear coupler to sort a sequence of weak and strong pulses, Proc. Natl. Conf. Theor. Phys. 37, 193. |
[34] | A. Nguyen Ba (1991), Squeezed excitons in semiconductors, Modern Physics Letters B 5, 587. |
[35] | A. Nguyen Ba (1992), Squeezed states of biexcitons in excited semiconductors, International Journal of Modern Physics B 6, 395. |
[36] | A. Nguyen Ba, D. Truong Minh (2002), Even and odd trio coherent states: Antibunching and violation of Cauchy-Schwarz inequalities, Journal of Optics B: Quantum and Semiclassical Optics 4, 289. |
[37] | A. Nguyen Ba, T. Vo (1999), General multimode sum-squeezing, Physics Letters A 261, 34. |
[38] | A. Nguyen Ba, T. Vo (2000), General multimode difference-squeezing, Physics Letters A 270, 27. |
[39] | D. Truong Minh, H. Nguyen Thi Xuan, A. Nguyen Ba (2014), Sum squeezing, difference squeezing, higher-order antibunching and entanglement of two-mode photon-added displaced squeezed states, Int. J. Theor. Phys. 53, 899. |
A. Nguyen Ba, J. Kim, K. Kim (2011), Generation of cluster-type entangled coherent states using weak nonlinearities and intense laser beams, Quantum Information and Computation 11, 0124. | |
[41] | H. Nguyen Thi Xuan, D. Truong Minh (2016), Nonclassical properties and teleportation in the two-mode photon-added displaced squeezed states, International Journal of Modern Physics B 30, 1650032. |
[42] | A. Nguyen Ba, J. Kim (2008), Joint remote state preparation, Journal of Physics B: Atomic, Molecular and Optical Physics 41, 095501. |
[43] | D. Truong Minh, D. Dang Huu, D. Tran Quoc (2020), Higher-order nonclassical properties of nonlinear charge pair cat states, Journal of Physics B: Atomic, Molecular and Optical Physics 53, 025402. |
[44] | V. Cao Long, M. Trippenbach (1986), Photoelectron spectra induced by broad-band chaotic light, Z. Phys. B 63, 267. |
[45] | V. Cao Long, K. Doan Quoc (2012), An exact soluble equation for the steady state probability distribution in a nonlinear system, application to the noise reduction in Raman ring laser. Opt. Quant. Electron. 43, 137. |
[46] | K. Doan Quoc, T. Bui Dinh, V. Cao Long, W. Leoński (2013), A stochastic model of the influence of buffer gas collisions on Mollow spectra, Eur. Phys. J. Spec. Top. 222, 2241. |
[47] | K. Doan Quoc, V. Cao Long, L. Chu Van, H. Nguyen Van, H. Nguyen Ngoc (2016), Mollow spectrum influenced by collisional fluctuations described by a stochastic model of collisions, Opt. Quant. Electron. 48, 45. |
[48] | K. Doan Quoc (2016), Noise reduction in a Raman ring laser by two- telegraph pre-Gaussian pump, Opt. Quant. Electron. 48, 323. |
[49] | K. Doan Quoc, V. Cao Long, W. Leoński (2012), A broad-band laser-driven double Fano system—photoelectron spectra, Phys. Scr. 86, 045301. |
K. Doan Quoc, V. Cao Long, W. Leoński (2012), Electromagnetically induced transparency for Λ-like systems with a structured continuum and broad-band coupling laser, Phys. Scr. T 147, 014008. | |
[51] | K. Doan Quoc, V. Cao Long, L. Chu Van, P. Huynh Vinh (2016), Electromagnetically induced transparency for Λ-like systems with degenerate autoionizing levels and a broadband coupling laser, Optica Applicata 46, 93. |
[52] | K. Doan Quoc, D. Nguyen Ba, T. Thai Doan, Q. Ho Quang, V. Cao Long, W. Leoński, (2018), Broadband laser-driven electromagnetically induced transparency in three-level systems with a double Fano continuum, J. Opt. Soc. Am. B 35, 1536. |
[53] | M. Sargent, M.O. Scully, W.E. Lamb (1974), Laser Physics, Addison Wesley, Reading. |
[54] | G.E. Uhlenbeck, L.S. Ornstein (1930), On the theory of the Brownian motion, Phys. Rev. 36, 823. |
[55] | J.L. Doob (1942), The Brownian movement and stochastic equations, Annals of Math. 43, 351. |
[56] | R. Short, L. Mandel, R. Roy (1982), Correlation Functions of a Dye Laser: Comparison between Theory and Experiment, Phys. Rev. Lett. 49, 647. |
[57] | K. Kaminishi, R. Roy, R. Short, L. Mandel (1981), Investigation of photon statistics and correlations of a dye laser, Phys. Rev. A 24, 370. |
[58] | W.H. Louisell (1973), Quantum Statistical Properties of Radiation, John Wiley and Sons, New York. |
[59] | H. Haken (1966), Theory of intensity and phase fluctuations of a homogeneously broadened laser, Z. Phys. 190, 327. |
R. Graham, M. Höhnerbach, A. Shenzle (1982), Statisticalproperties of light from a dye laser, Phys. Rev. Lett. 48, 1396. | |
[61] | S.N. Dixit, P.S. Sahni (1983), Nonlinear stochastic processes driven by colored noise: Application to dye-laser statistics, Phys. Rev. Lett, 50, 1273. |
[62] | P. Zoller, G. Alber, R. Salvador (1981), ac Stark splitting in intense stochastic driving fields with Gaussian statistics and non-Lorentzian line shape, Phys. Rev. A 24, 398. |
[63] | M. Abramowitz, I.A. Stegun (1964), Handbook of Mathematical Functions, Natl. Bur. Stand. Washington. |
[64] | E. Janke, F. Emde, F. Lösch (1977), Special functions, Nauka, Moscow. |
[65] | P. Zoller (1979), Ac stark splitting in double optical resonance and resonance fluorescence by a nonmonochromatic chaotic field, Phys. Rev. A 20, 1019. |
[66] | N.G. Van Kampen (2007), Stochastic Processes in Physics and Chemistry, North-Holland Publishing Company, Amsterdam. |
[67] | R.F. Fox (1978), Gaussian stochastic processes in physics, Phys. Rep, 48, 181. |
[68] | S.N. Dixit, P. Zoller, P. Lambropoulos (1980), Nonlinear orentzian laser line shapes and the reversed peak asymmetry in double optical resonance, Phys. Rev. A 21, 1289. |
[69] | J. Peřina (1984), Quantum statistics of linear and nonlinear optical phenomena, D. Reidel Publishing Company, Kulwer Academic Publisher Group. |
[70] | C.C. Gerry, P.L. Knight (2005), Introductory quantum optics, Cambridge University Press. |
R. Glauber (1963), Coherent and incoherent states of the radiation field, Phys. Rev. 131, 2766. | |
[72] | R. Glauber (1963), Photon correlations. Phys. Rev. Lett., 10, 84. |
[73] | V. Buzek, A.D. Wilson-Gordon, P.L. Knight, W.K. Lai (1992), Coherent states in a finite-dimensional basis: Their phase properties and relationship to coherent states of light. Phys. Rev. A 45, 8079. |
[74] | A. Miranowiacz, K. Piatek, R. Tanaś (1994), Coherent states in a finite- dimensional Hilbert space, Phys. Rev. A 50, 3423. |
[75] | L.M. Kuang, F.B. Wang, Y.G. Zhou (1993), Dynamics of harmonic- oscillator in a finite-dimensional Hilbert-space, Phys. Lett. A 183, 1. |
[76] | B. Schumacher (1995), Quantum coding, Phys. Rev. A 51, 2738. |
[77] | Cao Long Vân (2005), Tin học lượng tử và máy tính lượng tử (II), Tạp chí Ứng dụng Toán học 3, 77. |
[78] | R. Mark (2005), Preparation of Entangled States and Quantum Teleportation with Atomic Qubits, Innsbruck University Press 14, 89. |
[79] | J.S. Bell (1964), On the einstein podolsky rosen paradox, Physics 1, 195. |
[80] | J.F. Clauser, M.A. Horne, A. Schimony, R.A. Holt (1969), Proposed experiment to test local hidden-variable theories, Phys. Rev. Lett. 23, 880. |
[81] | B.C. Sanders (1989), Quantum dynamics of the nonlinear rotator and the effects of continual spin measurement, Phys. Rev. A 40, 2417. |
[82] | D. Sych, G. Leuchs (2009), A complete basis of generalized bell states, New J. Phys. 11, 013006. |
[83] | L. Henderson (2003), The von Neumann Entropy, Brit. J. Phil. Sci. 54, 291. |
G. Jaeger (2009), Entanglement information and the interpretation of quantum mechanics, Phys. Rev. A 18, 50. | |
[85] | M. Nielsen, I. Chuang (2010), Quantum Computation and Quantum Information, Cambridge University Press. |
[86] | W.K. Wootters (2001), Entanglement of fomation and concurrente, Quantum information and computation, J. Phys. B: At. Mol. Opt. Phys, 1, 27. |
[87] | Cao Long Vân, Đinh Xuân Khoa, Trippenbach Marek (2010), Nhập môn quang học phi tuyến, NXB GD, Hà Nội. |
[88] | L.D. Landau, E.M. Lifshitz (1975), Điện động lực học các môi trường liên tục, NXB KHKT. |
[89] | C. Christopher, P.L. Knight (2010), Introductory Quantum Optics, Cambridge University Press. |
[90] | J. Peřina Jr, J. Peřina (2000), Quantum statistics of nonlinear optical couplers, In E. Wolf (Ed.), Progress in optics, Amsterdam, Elsevier. |
[91] | J. Bajer, M. Dusek, J. Fiurasek, Z. Hradil, A. Luks, V. Perinova, J. Rehacek, J. Peřina, O. Haderka, M. Hendrych, J. Peřina Jr, N. Imoto, M. Koashi, A. Miranowicz (2001), Nonlinear phenomena in quantum Optics, in M. Evans (Ed.), Contemporary optics and electrodynamics. New York, Wiley. |
[92] | A. Kowalewska-Kudłaszyk, W. Leoński (2009), Sudden death and birth of entanglement effects for Kerr-nonlinear coupler, J. Opt. Soc. Am. B 26, 1289. |
[93] | W. Leoński, R. Tanaś (1994), Possibility of producing the one-photon state in a kicked cavity with a nonlinear Kerr medium, Phys. Rev. A 49, R20. |
W. Leoński, S. Dyrting, R. Tanaś (1997), Fock states generation in a kicked cavity with a nonlinear medium, J. Mod. Opt. 44, 2105. | |
[95] | W. Leoński (1996), Fock states in a Kerr medium with parametric pumping, Phys. Rev. A 54, 3369. |
[96] | S.Ya. Kilin, D.B. Horoshko (1995), Fock state generation by the methods of nonlinear optics, Phys. Rev. Lett. 74, 5206. |
[97] | W. Leoński, A. Miranowicz (2004), Kerr nonlinear coupler and entanglement, J. Opt. B: Quantum and Semiclass. Opt. 6, S37. |
[98] | A. Kowalewska-Kudłaszyk, W. Leoński (2010), The phase of the coupling effect on entanglement decay in nonlinear coupler system, Phys. Scr. T140, 014050. |
[99] | A. Kowalewska-Kudłaszyk, W. Leoński (2010), Squeezed vacuum reservoir effect for entanglement decay in the nonlinear quantum scissors system, J. Phys. B: At. Mol. Opt. Phys. 43, 205503. |
[100] | A. Kowalewska-Kudłaszyk, W. Leoński (2010), Sudden death of entanglement and its rebirth in a system of two nonlinear oscillators, Phys. Scr. T140, 014051. |
[101] | A. Kowalewska-Kudłaszyk, W. Leoński, J. Peřina Jr (2011), Photon- number entangled states generated in Kerr media with optical parametric pumping, Phys. Rev. A 83, 052326. |
[102] | Nguyễn Thị Thanh Tâm (2011), “Giao thoa kế Mach-Zehnder sợi quang phi tuyến hai cổng”, Luận án tiến sĩ vật lý, Trường Đại học Vinh. |
[103] | A. Miranowicz, W. Leoński (2004), Dissipasion in systems of linear and nonlinear quantum scissors, J. Opt. B: Quantum Semiclass. Opt. 6, S43. |
[104] | A. Chefles, S.M. Barnett, (1996), Quantum theory of two-mode nonlinear directional couplers, J. Mod. Opt. 43, 709. |