99
Views
37
CrossRef citations to date
0
Altmetric
Original Articles

Interaction of Superpositions of Coherent States of Light with Two-level Atoms

, &
Pages 1441-1459 | Received 09 Jan 1992, Accepted 05 Feb 1992, Published online: 01 Mar 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (9)

O. Abbasi & A. Jafari. (2017) Four-photon nonlinear coherent states. Journal of Modern Optics 64:1, pages 32-45.
Read now
P. P. Munhoz & A. Vidiella-Barranco . (2005) Non-conditioned generation of Schrödinger cat states in a cavity. Journal of Modern Optics 52:11, pages 1557-1573.
Read now
D. Jonathan, K. Furuya & A Vidiella-Barranco. (1999) Dressed-state approach to population trapping in the Jaynes-Cummings model. Journal of Modern Optics 46:12, pages 1697-1719.
Read now
H. Moya-Cessa & A. Vidiella-Barranco. (1995) On the Interaction of Two-level Atoms with Superpositions of Coherent States of Light. Journal of Modern Optics 42:7, pages 1547-1552.
Read now
Amitabh Joshi & Mritunjay Singh. (1995) Effects of Even and Odd Coherent States on the Evolution of the Two-photon Jaynes-Cummings model. Journal of Modern Optics 42:4, pages 775-785.
Read now
C.A. Arancibia-Bulnes, S.M. Chumakov & J.J. Sánchez-Mondragón. (1993) Atomic Dipole Dynamics in the Thermal Quantized Cavity Field. Journal of Modern Optics 40:11, pages 2071-2079.
Read now
BruceW. Shore & PeterL. Knight. (1993) The Jaynes-Cummings Model. Journal of Modern Optics 40:7, pages 1195-1238.
Read now
SimonJ.D. Phoenix & StephenM. Barnett. (1993) Non-local Interatomic Correlations in the Micromaser. Journal of Modern Optics 40:6, pages 979-983.
Read now
H. Moya-Cessa & A. Vidiella-Barranco. (1992) Interaction of Squeezed Light with Two-level Atoms. Journal of Modern Optics 39:12, pages 2481-2499.
Read now

Articles from other publishers (28)

Jorge A. Anaya-Contreras, Arturo Zúñiga-Segundo & Héctor M. Moya-Cessa. (2023) Statistical Mixture of Kaleidoscope States Interacting with a Two-Level Atom: Entropy and Purification. Photonics 10:2, pages 150.
Crossref
S. Kannan, M. Rohith & C. Sudheesh. (2022) Nonlinear dynamics of superposition of wavepackets. The European Physical Journal Plus 137:4.
Crossref
Héctor M. Moya-Cessa, Felipe A. Asenjo, Sergio A. Hojman & Francisco Soto-Eguibar. (2022) Two-mode squeezed state generation using the Bohm potential. Modern Physics Letters B 36:09.
Crossref
B. Mojaveri, A. Dehghani, Z. Ahmadi & S. Amiri Faseghandis. (2020) Interaction of a para-Bose state with two two-level atoms: control of dissipation by a local classical field. The European Physical Journal Plus 135:2.
Crossref
Stephen M. Barnett, Almut Beige, Artur Ekert, Barry M. Garraway, Christoph H. Keitel, Viv Kendon, Manfred Lein, Gerard J. Milburn, Héctor M. Moya-Cessa, Mio Murao, Jiannis K. Pachos, G. Massimo Palma, Emmanuel Paspalakis, Simon J.D. Phoenix, Benard Piraux, Martin B. Plenio, Barry C. Sanders, Jason Twamley, A. Vidiella-Barranco & M.S. Kim. (2017) Journeys from quantum optics to quantum technology. Progress in Quantum Electronics 54, pages 19-45.
Crossref
Arturo Zúñiga-Segundo, Raúl Juárez-Amaro, Omar Aguilar-Loreto & Héctor M. Moya-Cessa. (2017) Field’s entropy in the atom–field interaction: Statistical mixture of coherent states. Annals of Physics 379, pages 150-158.
Crossref
J. Batouli, M. El Baz & A. Maaouni. (2016) Optical properties of the superposition of q -deformed coherent states . Modern Physics Letters A 31:34, pages 1650190.
Crossref
Luis Andrade-Morales, Braulio Villegas-Martínez & Hector Moya-Cessa. (2016) Entropy for the Quantized Field in the Atom-Field Interaction: Initial Thermal Distribution. Entropy 18:10, pages 346.
Crossref
Omid Abbasi & Akbar Jafari. (2016) Dynamics of entropy and quantum statistical properties of the field in the interaction of a single two-level atom with a superposition of nonlinear coherent states in the framework of f-deformed Jaynes–Cummings model. Optical and Quantum Electronics 48:9.
Crossref
M. Sebawe Abdalla, A.-S. F. Obada, E. M. Khalil & A.-B. A. Mohamed. (2013) Entanglement of a cavity field interacting with a superconducting charge qubit. Progress of Theoretical and Experimental Physics 2013:8.
Crossref
G. M. Abd Al-Kader & A.-S. F. Obada. (2008) Von Neumann entropy and entropy squeezing of a two-level atom and the superposition of squeezed displaced fock states. Journal of Russian Laser Research 29:4, pages 398-407.
Crossref
Héctor Moya-Cessa. (2006) Decoherence in atom–field interactions: A treatment using superoperator techniques. Physics Reports 432:1, pages 1-41.
Crossref
GAMAL M. ABD AL-KADER. (2012) ENTROPY AND ENTANGLEMENT OF THE SUPERPOSITIONS OF DISPLACED FOCK STATES WITH A TWO-LEVEL ATOM. International Journal of Modern Physics B 20:11n13, pages 1269-1279.
Crossref
GAMAL M. ABD AL-KADER. (2011) INTERACTION OF THE SUPERPOSITIONS OF SQUEEZED DISPLACED FOCK STATES WITH ATOMIC SYSTEMS. Modern Physics Letters B 18:25, pages 1311-1318.
Crossref
Faisal A.A. El-Orany, M.H. Mahran, M.R.B. Wahiddin & A.M. Hashim. (2004) Quantum phase properties of two-mode Jaynes–Cummings model for Schrödinger-cat states: interference and entanglement. Optics Communications 240:1-3, pages 169-184.
Crossref
Mahmoud Abdel-Aty. (2003) An investigation of entanglement and quasiprobability distribution in a generalized Jaynes-Cummings model. Journal of Mathematical Physics 44:4, pages 1457-1471.
Crossref
Faisal A A El-Orany & A-S Obada. (2003) On the evolution of superposition of squeezed displaced number states with the multiphoton Jaynes Cummings model. Journal of Optics B: Quantum and Semiclassical Optics 5:1, pages 60-72.
Crossref
Faisal A A El-Orany, J Perina, V Perinová & M Sebawe Abdalla. (2002) Quantum properties of a single-mode dissipative amplifier against Schrödinger-cat states. Journal of Optics B: Quantum and Semiclassical Optics 4:3, pages S153-S161.
Crossref
Dagoberto S Freitas, A Vidiella-Barranco & J.A Roversi. (1998) Field purification in the intensity-dependent Jaynes-Cummings model. Physics Letters A 249:4, pages 275-280.
Crossref
H Moya-Cessa, S Chávez-Cerda & J.J Sánchez-Mondragón. (1995) Interaction of quantized light with a two-level atom: comparison between the Stark and Kerr effects. Physics Letters A 205:1, pages 51-54.
Crossref
Vladimír Bužek & Peter L. Knight. 1995. 1 158 .
H. Moya-Cessa, P. L. Knight & A. Rosenhouse-Dantsker. (1994) Photon amplification in a two-photon lossless micromaser. Physical Review A 50:2, pages 1814-1821.
Crossref
S. M. Chumakov, A. B. Klimov & J. J. Sanchez-Mondragon. (1994) General properties of quantum optical systems in a strong-field limit. Physical Review A 49:6, pages 4972-4978.
Crossref
S. M. Dutra & P. L. Knight. (1994) Atomic probe for quantum states of the electromagnetic field. Physical Review A 49:2, pages 1506-1508.
Crossref
B. M. Garraway, B. Sherman, H. Moya-Cessa, P. L. Knight & G. Kurizki. (1994) Generation and detection of nonclassical field states by conditional measurements following two-photon resonant interactions. Physical Review A 49:1, pages 535-547.
Crossref
S. M. Dutra, P. L. Knight & H. Moya-Cessa. (1993) Discriminating field mixtures from macroscopic superpositions. Physical Review A 48:4, pages 3168-3173.
Crossref
P. L. Knight & B. W. Shore. (1993) Schrödinger-cat states of the electromagnetic field and multilevel atoms. Physical Review A 48:1, pages 642-655.
Crossref
Christopher C. Gerry & Edwin E. HachIIIIII. (1993) Interaction of a two-level atom with an even coherent state. Physics Letters A 179:1, pages 1-8.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.