208
Views
1
CrossRef citations to date
0
Altmetric
Articles

A unified approach to -, - and V-type systems with one continuum

, &
Pages 2083-2096 | Received 24 Dec 2016, Accepted 25 May 2017, Published online: 20 Jun 2017

References

  • Fano, U. Effects of Configuration Interaction on Intensities and Phase Shifts. Phys. Rev. 1961, 124, 1866–1878.
  • Lukyanchuk, B.; Zheludev, N.I.; Maier, S.A.; Halas, N.J.; Nordlander, P.; Giessen, H.; Chong, C.T. The Fano Resonance in Plasmonic Nanostructures and Metamaterials. Nat. Mater. 2010, 9, 707–715.
  • Khanikaev, A.B.; Wu, C.; Shvets, G. Fano-resonant Metamaterials and their Applications. Nanophotonics 2013, 2, 247–264.
  • Trocha, P.; Barnas, J. Quantum Interference and Coulomb Correlation Effects in Spin-Polarized Transport through Two Coupled Quantum Dots. Phys. Rev. B 2007, 76, 165432--1–165432--9.
  • Ridolfo, A.; Di Stefano, O.; Fina, N.; Saija, R.; Savata, S. Quantum Plasmonics with Quantum Dot-metal Nanoparticle Molecules: Influence of the Fano Effect on Photon Statistics. Phys. Rev. Lett. 2010, 105, 263601--1–263601--4.
  • Heiss, W.D.; Wunner, G. Fano-feshbach Resonances in Two-channel Scattering Around Exceptional Points. Eur. Phys. J. D 2014, 68, 284(1--6).
  • Eleuch, E.; Rotter, I. Nearby States in Non-Hermitian Quantum Systems II: Three and More States. Eur. Phys. J. D 2015, 69, 230(1--10).
  • Muradyan, A.Z.; Muradyan, G.A. Stationary States of the Jaynes--Cummings Model with Atomic Centre-of-mass Quantum Motion: Analytical Approximation to Transfer Counterpropagating Waves into aStanding Wave in a Large Photon Number Limit. J. Phys. B: Atomic Mol. Opt. Phys 2002, 35, 3995–4013.
  • Boutabba, N.; Eleuch, H.; Bouchriha, H. Thermal Bath Effect on Soliton Propagation in Three-level AtomicSystem. Synth. Metals 2009, 159, 1239–1243.
  • Eleuch, H.; Rotter, I. Width Bifurcation and Dynamical Phase Transitions in Open Quantum Systems. Phys. Rev. E 2013, 87, 052136--1–052136--15.
  • Feshbach, H. Unified Theory of Nuclear Reactions. Ann. Phys. 1958, 5, 357–390.
  • von Neumann, J.; Wigner, E.P. Uber merkwurdige diskrete eigenwerte. Z. Phys. 1929, 30, 465–467.
  • Deb, B.; Agarwal, G.S. Creation and Manipulation of Bound States in the Continuum with Lasers: Applications to Cold Atoms and Molecules. Phys. Rev. A 2014, 90, 063417--1–063417--11.
  • Dicke, R.H. Coherence in Spontaneous Radiation Processes. Phys. Rev. 1954, 93, 99–110.
  • Köhler, T.; Góral, K.; Julienne, P.S. Production of Cold Molecules via Magnetically Tunable Feshbach Resonances. Rev. Mod. Phys. 2006, 78, 1311–1361.
  • Saha, S.; Naskar, S.; Deb, B. Photoassosiative Cooling and Trapping of a Pair of Interacting Atoms. Phys. Rev. A 2016, 94, 023413--1–023413--11.
  • Deng, Z.; Eberly, J.H. Double-resonance Effects in Strong-field Autoionization. J. Opt. Soc. Am. B 1984, 1, 102–107.
  • Paspalakis, E.; Kylstra, N.J.; Knight, P.L. Propagation Dynamics in an Autoionization Medium. Phys. Rev. A 1999, 60, 642–647.
  • Glutsch, S. Optical Absorption of the Fano Model: General Case of Many Resonances and Many Continua. Phys. Rev. B 2002, 66, 075310--1–075310--6.
  • Shao, Y.L.; Charalambidis, D.; Fotakis, C.; Lambropoulos, P. Observation of Laser-induced Continuum Structure in Ionization of Sodium. Phys. Rev. Lett. 1991, 67, 3669–3672.
  • Cavalieri, S.; Eramo, R.; Buffa, R.; Matera, M. Laser-induced Autoionizing and Continuum Structures: Line-shape Study in the Presence of Continuum-Continuum Transitions. Phys. Rev. A 1995, 51, 2974–2981.
  • Zhang, J.; Lambropolous, P. Laser-induced Continuum Structure and Third-harmonic Generation in Sodium: Theory and Calculations. Phys. Rev. A 1992, 45, 489–498.
  • Shapiro, M.; Brumer, P. Quantum Control of Bound and Continuum State Dynamics. Phys. Rep. 2006, 425, 195–264.
  • Rangelov, A.A.; Vitanov, N.V.; Arimondo, E. Stimulated Raman Adiabatic Passage into Continuum. Phys. Rev. A 2007, 76, 043414--1–043414--8.
  • Dalton, B.J.; Dutton, M.E.StJ. Laser-induced Continuum Structures and Above-threshold Ionization. J. Mod. Opt. 1994, 41, 1099–1120.
  • Sen, S.; Nath, M.R.; Dey, T.K.; Gangopadhyay, G. Bloch Space Structure, the Qutrit Wavefunction andAtomfield Entanglement in Three-level Systems. Ann. Phys 2012, 327, 224–252, and references therein.
  • Yoo, H.I.; Eberly, J.H. Dynamical Theory of an Atom with Two or Three Levels Interacting with Quantized Cavity Fields. Phys. Rep. 1985, 118, 239–337.
  • Rzazewski, K.; Eberly, J.H. Confluence of Bound-free Coherences in Laser-induced Autoionization. Phys. Rev. Lett. 1981, 47, 408–412.
  • Agarwal, G.S.; Haan, S.L.; Cooper, J. Radiative Decay if Autoionizing States in Laser Fields. I. General Theory. Phys. Rev. A 1984, 29, 2552–2564.
  • Agarwal, G.S.; Haan, S.L.; Cooper, J. Radiative Decay of Autoionizing States in Laser Fields. Ii. Photoemission Spectra. Phys. Rev. A 1984, 29, 2565–2577.
  • Agarwal, G.S. Quantum Optics, Cambridge University Press: Cambridge, 2013.
  • Cohen-Tannoudji, C.; Phillips, W. New Mechanisms for Laser Cooling. Phys. Today 1990, 43, 33–40.
  • Suominen, K.A.; Stenholm, S.; Stahlberg, B. Laser-induced Dispersion in a Three-level System. J. Opt. Soc. Am. B 1991, 8, 1899–1906.
  • Boller, K.J.; Imamoglu, A.; Harris, S.E. Observation of Electromagnetically Induced Transparency. Phys. Rev. Lett. 1991, 66, 2593–2596.
  • Kasapi, A.; Jain, M.; Yin, G.Y.; Harris, S.E. Electromagnetically Induced Transparency: Propagation Dynamics. Phys. Rev. Lett. 1995, 74, 2447–2450.
  • Harris, S.E. Electromagnetically Induced Transparency. Phys. Today 1997, 50, 36–42.
  • Hau, L.V.; Harris, S.E.; Dutton, Z.; Behroozi, C.H. Light Speed Reduction to 17 Metres Per Second in an Ultracold Atomic Gas. Nature 1999, 397, 594–598.
  • Dutton, Z.; Ginsberg, N.S.; Slowe, C.; Hau, L.V. The Art of Taming Light: Ultra-slow and Stopped Light. Europhys. News 2004, 35, 33–39.
  • Li, J.; Paraoanu, G.S.; Cicak, K.; Altomare, F.; Park, J.I.; Simmonds, R.W.; Sillanpa, M.A.; Hakonen, P.J. Dynamical Autler-Townes Control of a Phase Qubit. Sci. Rep. 2012, 2, 1–7.
  • Marangos, J.P. Electromagnetically induced transparency. J. Mod. Opt. 1998, 45, 471–503.
  • Fleischhauer, M.; Imamoglu, A.; Marangos, J.P. Electromagnetically Induced Transparency: Optics in Coherent Media. Rev. Mod. Phys. 2005, 77, 633–673.
  • Sen, S.; Dey, T.K.; Nath, M.R.; Gangopadhyay, G. Comparison of Electromagnetically Induced Transparency in Lambda, Cascade and vee Three-level Systems. J. Mod. Opt. 2015, 62, 166–174.
  • Carroll, C.E.; Hioe, F.T. Coherent Population Transfer via the Continuum. Phys. Rev. Lett. 1992, 68, 3523–3526.
  • Carroll, C.E.; Hioe, F.T. Selective Excitation via the Continuum and Suppression of Ionization. Phys. Rev. A 1993, 47, 571–580.
  • Nakajima, T.; Elk, M.; Zhang, J.; Lambropoulos, P. Population Transfer through the Continuum. Phys. Rev. A 1994, 50, R913–R916.
  • Unanyan, R.G.; Vitanov, N.V.; Stenholm, S. Suppression of Incoherent Ionization in Population Transfer via Continuum. Phys. Rev. A 1998, 57, 462–466.
  • Vardi, A.; Shapiro, M.; Bergmann, K. Complete Population Transfer to and from a Continuum and the Radiative Association of Cold Na Atoms to Produce Translationally Cold Na2 Molecules in Specific Vib-rotational States. Opt. Express 1999, 4, 91–106.
  • Vardi, A.; Abrashkevich, D.; Frishman, E.; Shapiro, M. Theory of Radiative Recombination with Strong Laser Pulses and the Formation of Ultracold Molecules via Stimulated Photo-recombination of Cold Atoms. J. Chem. Phys. 1997, 107, 6166–6174.
  • Weiner, J.; Bagnato, V.S.; Zilio, S.; Julienne, P.S. Experiments and Theory in Cold and Ultracold Collisions. Rev. Mod. Phys. 1999, 71, 1–85.
  • Jones, K.M.; Tiesinga, E.; Lett, P.D.; Julienne, P.S. Ultracold Photoassociation Spectroscopy: Long-range Molecules and Atomic Scattering. Rev. Mod. Phys. 2006, 78, 483–535.
  • Sardar, D.; Naskar, S.; Pal, A.; Berriche, H.; Deb, B. Formation of a Molecular Ion by Photoassociative Raman Processes. J. Phys. B 2016, 49, 245202(1--9).
  • Schlöder, U.; Deuscle, T.; Silber, C.; Zimmerman, C. Autler-Townes Splitting in Two-color Photoassociationof 6Li. Phys. Rev. A 2003, 68, 051403(R)--1–051403(R)--4.
  • Winkler, K.; Thalhammer, G.; Theis, M.; Ritsch, H.; Grimm, R.; Hecker, J. Denschlag. Atom-molecule Dark States in a Bose-Einstein Condensate. Phys. Rev. Lett. 2005, 95, 063202--1–063202--4.
  • Jones, K.M.; Maleki, S.; Ratliff, L.P.; Lett, P.D. Two-colour Photoassociation Spectroscopy of Ultracold Sodium. J. Phys. B 1997, 30, 289–308.
  • Quoc, K.D.; Long, V.C.; Leonski, W. A Broad-band Laser-driven Double Fano System-Photoelectron Spectra. Phys. Scr. 2012, 86, 045301–056746.
  • Dinh, T.B.; Leonski, W.; Long, V.C.; Perina, J. Jr Electromagnetically Induced Transparency in Systems with Degenerate Autoionizing Levels in A-configuration. Opt. Appl. 2013, 43, 471–484.
  • Raczynski, A.; Rzepecka, M.; Zaremba, J.; Zielinska-Kaniasty, S. Electromagnetically Induced Transparency and Light Slowdown for λ-like Systems with a Structured Continuum. Opt. Commun. 2006, 266, 552–557.
  • Kenan, Q.; Agarwal, G.S. Fano Resonances and their Control in Optomechanics. Phys. Rev. A 2013, 87, 063813--1–063813--7.
  • Eleuch, H.; Elser, D.; Bennaceur, B. Soliton Propagation in an Absorbing Three-level Atomic System. Laser Phys. Lett. 2004, 1, 391–678.
  • Dridi, G.; Guérin, S.; Hakobyan, V.; Jauslin, H.R.; Eleuch, H. Ultrafast Stimulated Raman Parallel Adiabatic Passage by Shaped Pulses. Phys. Rev. A 2009, 80, 043408--1–043408--6.
  • Autler, S.H.; Townes, C.H. Stark Effect in Rapidly Varying Fields. Phys. Rev. 1955, 100, 703–722.
  • Anisimov, Petr M.; Dowling, Jonathan P.; Sanders, Barry C. Objectively Discerning Autler-Townes Splitting from Electromagnetically Induced Transparency. Phys. Rev. Lett. 2011, 107, 163604--1–163604--4.
  • Giner, L.; Veissier, L.; Sparkes, B.; Sheremet, A.S.; Nicolas, A.; Mishina, O.S.; Scherman, M.; Burks, S.; Shomroni, I.; Kupriyanov, D.V.; Lam, P.K.; Giacobino, E.; Laurat, J. Experimental Investigation of the Transition between Autler-Townes Splitting and Electromagnetically-induced-transparency Models. Phys. Rev. A 2013, 87, 013823--1–013823--5.
  • Abdumalikov, A.A.; Astafiev, O.; Zagoskin, A.M.; Pashkin, Y.A; Nakamura, Y.; Tsai, J.S. Electromagnetically Induced Transparency on a Single Artificial Atom. Phys. Rev. Lett. 2010, 104, 193601--1–193601--4.
  • Rotter, I.; Bird, J.P. A Review of Progress in the Physics of Open Quantum Systems: Theory and Experiment. Rep. Progr. Phys. 2015, 78, 114001(1--37).

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.