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* April 2010. Scientific Secretary of the 11th edition of the [http://plmcn10.phys.soton.ac.uk International Conference on ''Physics of Light-Matter Coupling in Nanostructures''] (PLMCN10) held in Cuernavaca (Mexico), 12-17 April 2010. Webmaster of the conference website and co-editor of the proceedings (in Superlattices and Microstructures). | * April 2010. Scientific Secretary of the 11th edition of the [http://plmcn10.phys.soton.ac.uk International Conference on ''Physics of Light-Matter Coupling in Nanostructures''] (PLMCN10) held in Cuernavaca (Mexico), 12-17 April 2010. Webmaster of the conference website and co-editor of the proceedings (in Superlattices and Microstructures). | ||
− | = | + | = Selected publications = |
− | + | You can also see [[Elena's_full_list_of_publication|my full list of publications]]. | |
1. ''Entanglement and lasing with two quantum dots in a microcavity'', E. del Valle, F. P. Laussy, [http://www.nanoscience.unimo.it/filippo.html F. Troiani] and [http://www.uam.es/departamentos/ciencias/fisicateoricamateria/especifica/hojas/ctp1.html C. Tejedor]. [http://link.aps.org/abstract/PRB/v76/e235317 Phys. Rev. B 76, 235317 (2007)]. Featured in the January 7, 2008 issue of the [http://www.vjnano.org Virtual Journal of Nanoscale Science & Technology] and in the January 2008 issue of [http://www.vjquantuminfo.org Virtual Journal of Quantum Information]. | 1. ''Entanglement and lasing with two quantum dots in a microcavity'', E. del Valle, F. P. Laussy, [http://www.nanoscience.unimo.it/filippo.html F. Troiani] and [http://www.uam.es/departamentos/ciencias/fisicateoricamateria/especifica/hojas/ctp1.html C. Tejedor]. [http://link.aps.org/abstract/PRB/v76/e235317 Phys. Rev. B 76, 235317 (2007)]. Featured in the January 7, 2008 issue of the [http://www.vjnano.org Virtual Journal of Nanoscale Science & Technology] and in the January 2008 issue of [http://www.vjquantuminfo.org Virtual Journal of Quantum Information]. | ||
2. ''Electrostatic control of quantum dot entanglement induced by coupling to external reservoirs'', E. del Valle, F. P. Laussy and C. Tejedor. [http://www.iop.org/EJ/abstract/0295-5075/80/5/57001/ EPL 80, 57001 (2007)]. Selected for the ''Editor's Choice''. ([http://arxiv.org/abs/0710.1490 arXiv:0710.1490]) | 2. ''Electrostatic control of quantum dot entanglement induced by coupling to external reservoirs'', E. del Valle, F. P. Laussy and C. Tejedor. [http://www.iop.org/EJ/abstract/0295-5075/80/5/57001/ EPL 80, 57001 (2007)]. Selected for the ''Editor's Choice''. ([http://arxiv.org/abs/0710.1490 arXiv:0710.1490]) | ||
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3. ''Optical spectra of a quantum dot in a microcavity in the nonlinear regime'', E. del Valle, F. P. Laussy, F. M. Souza and I. A. Shelykh. [http://link.aps.org/abstract/PRB/v78/e085304 Phys. Rev. B 78, 085304 (2008)]. ([http://arxiv.org/abs/0807.3199 arXiv:0807.3199]) | 3. ''Optical spectra of a quantum dot in a microcavity in the nonlinear regime'', E. del Valle, F. P. Laussy, F. M. Souza and I. A. Shelykh. [http://link.aps.org/abstract/PRB/v78/e085304 Phys. Rev. B 78, 085304 (2008)]. ([http://arxiv.org/abs/0807.3199 arXiv:0807.3199]) | ||
4. ''Strong-coupling of quantum dots in microcavities'', F. P. Laussy, E. del Valle and C. Tejedor. [http://link.aps.org/doi/10.1103/PhysRevLett.101.083601 Phys. Rev. Lett. 101, 083601 (2008)]. ([http://arxiv.org/abs/0711.1894 arXiv:0711.1894]) | 4. ''Strong-coupling of quantum dots in microcavities'', F. P. Laussy, E. del Valle and C. Tejedor. [http://link.aps.org/doi/10.1103/PhysRevLett.101.083601 Phys. Rev. Lett. 101, 083601 (2008)]. ([http://arxiv.org/abs/0711.1894 arXiv:0711.1894]) | ||
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5. ''Collective fluid dynamics of a polariton condensate in a semiconductor microcavity'', A. Amo, D. Sanvitto, F. P. Laussy, D. Ballarini, E. del Valle, M. D. Martin, A. Lemaître, J. Bloch, D. N. Krizhanovskii, M. S. Skolnick, C. Tejedor and L. Viña, [http://www.nature.com/nature/journal/v457/n7227/abs/nature07640.html Nature 457, 291 (2009)]. ([http://arxiv.org/abs/0711.1539 arXiv:0711.1539]) | 5. ''Collective fluid dynamics of a polariton condensate in a semiconductor microcavity'', A. Amo, D. Sanvitto, F. P. Laussy, D. Ballarini, E. del Valle, M. D. Martin, A. Lemaître, J. Bloch, D. N. Krizhanovskii, M. S. Skolnick, C. Tejedor and L. Viña, [http://www.nature.com/nature/journal/v457/n7227/abs/nature07640.html Nature 457, 291 (2009)]. ([http://arxiv.org/abs/0711.1539 arXiv:0711.1539]) | ||
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8. ''Dynamics of the Formation and Decay of Coherence in a Polariton Condensate'', E. del Valle, D. Sanvitto, F.P. Laussy, A. Amo, D. Ballarini, R. André, C. Tejedor and L. Viña. [http://link.aps.org/doi/10.1103/PhysRevLett.103.096404 Phys. Rev. Lett. 103, 096404 (2009)]. ([http://arxiv.org/abs/0903.1954 arXiv:0903.1954]) | 8. ''Dynamics of the Formation and Decay of Coherence in a Polariton Condensate'', E. del Valle, D. Sanvitto, F.P. Laussy, A. Amo, D. Ballarini, R. André, C. Tejedor and L. Viña. [http://link.aps.org/doi/10.1103/PhysRevLett.103.096404 Phys. Rev. Lett. 103, 096404 (2009)]. ([http://arxiv.org/abs/0903.1954 arXiv:0903.1954]) | ||
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9. ''Two-photon lasing by a single quantum dot in a high-Q microcavity'', E. del Valle, S. Zippilli, F.P. Laussy, A. Gonzalez-Tudela, G. Morigi and C. Tejedor. [http://link.aps.org/doi/10.1103/PhysRevB.81.035302 Phys. Rev. B 81, 035302 (2010)]. ([http://arxiv.org/abs/0907.1861 arXiv:0907.1861]) | 9. ''Two-photon lasing by a single quantum dot in a high-Q microcavity'', E. del Valle, S. Zippilli, F.P. Laussy, A. Gonzalez-Tudela, G. Morigi and C. Tejedor. [http://link.aps.org/doi/10.1103/PhysRevB.81.035302 Phys. Rev. B 81, 035302 (2010)]. ([http://arxiv.org/abs/0907.1861 arXiv:0907.1861]) | ||
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11. ''Strong and weak coupling of two coupled qubits'', E. del Valle. [http://pra.aps.org/abstract/PRA/v81/i5/e053811 Phys. Rev. A. 81, 053811 (2010)]. ([http://arxiv.org/abs/1001.2201 arXiv:1001.2201]) | 11. ''Strong and weak coupling of two coupled qubits'', E. del Valle. [http://pra.aps.org/abstract/PRA/v81/i5/e053811 Phys. Rev. A. 81, 053811 (2010)]. ([http://arxiv.org/abs/1001.2201 arXiv:1001.2201]) | ||
− | + | 12. ''Effective cavity pumping from weakly coupled quantum dots'', E. del Valle and F.P. Laussy. To appear in Superlattices and Microstructures. ([http://arxiv.org/abs/1004.1681 arXiv:1004.1681, 2010]) | |
− | + | === In progress === | |
− | + | 13. ''Steady state entanglement of two coupled qubits'', E. del Valle, [http://arxiv.org/abs/1005.4383 arXiv:1005.4383 (2010)]. | |
− | + | 14. ''Incoherent Mollow triplet'', E. del Valle, F. P. Laussy, [http://arxiv.org/abs/1007.1471 arXiv:1007.1471 (2010)]. | |
− | + | ==== [http://www.icps2010.org ICPS30] Proceedings ==== | |
− | + | * ''On the coupling of two quantum dots through a cavity mode'', E. del Valle, [http://arxiv.org/abs/1007.1784 arXiv:1007.1784 (2010)]. | |
− | + | * ''Dephasing of strong coupling in the non-linear regime'', A. Gonzalez-Tudela, E. del Valle, E. Cancellieri, C. Tejedor, D. Sanvitto and F. P. Laussy. | |
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− | + | * ''Phase-space of Strong Coupling of two bosonic modes'', F. P. Laussy and E. del Valle. | |
− | + | * ''Buildup and decay of the coherence in a polariton condensate'', E. del Valle, D. Sanvitto, A. Amo, F.P. Laussy, M.D. Martin, R. André, C. Tejedor, and L. Viña. | |
− | + | === Books === | |
− | + | My [http://delvalle.laussy.org/elena/thesis thesis dissertation] is published as a monograph under the title ''Microcavity Quantum Electrodynamics'' ([http://www.vdm-publishing.com VDM Verlag], [http://www.amazon.com/Microcavity-Quantum-Electrodynamics-semiconductor-microcavities/dp/3639194608/ref=sr_1_1?ie=UTF8&s=books&qid=1255290707&sr=8-1 ISBN: 978-3-639-19460-9]). | |
= Conferences, schools and seminars = | = Conferences, schools and seminars = |
Elena's web : CV · Favourites · Links · Blog · SQUIRREL |
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Contents |
You can also see my full list of publications.
1. Entanglement and lasing with two quantum dots in a microcavity, E. del Valle, F. P. Laussy, F. Troiani and C. Tejedor. Phys. Rev. B 76, 235317 (2007). Featured in the January 7, 2008 issue of the Virtual Journal of Nanoscale Science & Technology and in the January 2008 issue of Virtual Journal of Quantum Information.
2. Electrostatic control of quantum dot entanglement induced by coupling to external reservoirs, E. del Valle, F. P. Laussy and C. Tejedor. EPL 80, 57001 (2007). Selected for the Editor's Choice. (arXiv:0710.1490)
3. Optical spectra of a quantum dot in a microcavity in the nonlinear regime, E. del Valle, F. P. Laussy, F. M. Souza and I. A. Shelykh. Phys. Rev. B 78, 085304 (2008). (arXiv:0807.3199)
4. Strong-coupling of quantum dots in microcavities, F. P. Laussy, E. del Valle and C. Tejedor. Phys. Rev. Lett. 101, 083601 (2008). (arXiv:0711.1894)
5. Collective fluid dynamics of a polariton condensate in a semiconductor microcavity, A. Amo, D. Sanvitto, F. P. Laussy, D. Ballarini, E. del Valle, M. D. Martin, A. Lemaître, J. Bloch, D. N. Krizhanovskii, M. S. Skolnick, C. Tejedor and L. Viña, Nature 457, 291 (2009). (arXiv:0711.1539)
6. Luminescence spectra of quantum dots in microcavities. I. Bosons, F. P. Laussy, E. del Valle and C. Tejedor. Phys. Rev. B 79, 235325 (2009). (arXiv:0807.3194)
7. Luminescence spectra of quantum dots in microcavities. II. Fermions, E. del Valle, F. P. Laussy and C. Tejedor. Phys. Rev. B 79, 235326 (2009). (arXiv:0812.2694)
8. Dynamics of the Formation and Decay of Coherence in a Polariton Condensate, E. del Valle, D. Sanvitto, F.P. Laussy, A. Amo, D. Ballarini, R. André, C. Tejedor and L. Viña. Phys. Rev. Lett. 103, 096404 (2009). (arXiv:0903.1954)
9. Two-photon lasing by a single quantum dot in a high-Q microcavity, E. del Valle, S. Zippilli, F.P. Laussy, A. Gonzalez-Tudela, G. Morigi and C. Tejedor. Phys. Rev. B 81, 035302 (2010). (arXiv:0907.1861)
10. Effect of pure dephasing on the Jaynes-Cummings nonlinearities, A. Gonzalez-Tudela, E. del Valle, E. Cancellieri, C. Tejedor, D. Sanvitto and F.P. Laussy. Optics Express 18, 7002 (2010). (arXiv:0907.1302)
11. Strong and weak coupling of two coupled qubits, E. del Valle. Phys. Rev. A. 81, 053811 (2010). (arXiv:1001.2201)
12. Effective cavity pumping from weakly coupled quantum dots, E. del Valle and F.P. Laussy. To appear in Superlattices and Microstructures. (arXiv:1004.1681, 2010)
13. Steady state entanglement of two coupled qubits, E. del Valle, arXiv:1005.4383 (2010).
14. Incoherent Mollow triplet, E. del Valle, F. P. Laussy, arXiv:1007.1471 (2010).
My thesis dissertation is published as a monograph under the title Microcavity Quantum Electrodynamics (VDM Verlag, ISBN: 978-3-639-19460-9).
1. Maratea (Italy), September 2005. Attendance to the International Summer School of Nanophotonics.
2. Madrid, February 2006. Seminar at Instituto de Ciencias de Materiales (ICMM insitute, CSIC).
3. Vienna (Austria), July 2006. Poster at ICPS28 (International Conference on the Physics of Semiconductors), titled Quantum cavity electrodynamics for two quantum dots.
4. Sheffield (U.K.), November 2006: Seminar at The University of Sheffield titled Cavity QED with two quantum dots.
5. Barcelona (Spain), November 2006: Poster at the QOIT project Kick-off meeting in the Institute of Photonic Science (ICFO) titled Cavity QED with two quantum dots.
6. La Habana (Cuba), April 2007: Oral presentation at PLMCN7, titled Steady state of two quantum dots in a cavity. Best student presentation award.
7. Brasilia (Brasil), July 2007: Invited talk in the international workshop Advances in Physics and Applications of Low-Dimensitonal Systems, titled Nanostructures as components for Quantum Optics.
8. Brasilia (Brasil), August 2007: Attendance to School on Atomic Quantum Fluids.
9. Madrid (Spain), December 2007: Invited talk in the X Jornada científica del Instituto de Ciencia de Materiales Nicolás Cabrera titled Light and matter in strong coupling.
10. Barcelona (Spain), January 2008: Poster at the second QOIT project meeting in the Institute of Photonic Science (ICFO) titled Coherent and incoherent strong coupling.
11. Tokyo (Japan), April 2008: Oral presentation at PLMCN8, titled Coherence and entanglement control of two quantum dots.
12. Madrid (Spain), June 2008: UAM Department seminar titled Luz y materia en acoplo fuerte.
13. Cambridge (U.K.), September 2008: Oral presentation at ICSCE4 (International Conference on Spontaneous Coherence in Excitonic Systems), titled Dynamics of formation and decay of coherence in a polariton BEC.
14. Allahabad (India), January 2009: Oral presentation at ICTOPON (International Conference on Transport and Optical Properties of Nanomaterials), titled Two-photon resonance with a quantum dot in a microcavity.
15. Santiago de Cuba (Cuba), January 2009: Poster at the International School of Nanophotonics and Photovoltaics titled Strong coupling of quantum dots in microcavities.
16. Lecce (Italy), April 2009: Oral presentation at PLMCN9, titled Cavity QED with Quantum Dots in Microcavities.
17. Reykjavík (Iceland), April 2009: Seminar at the University of Iceland, titled Light-matter coupling in the presence of decoherence; application to quantum dots in semiconductor microcavities.
18. Madrid (Spain), September 2009: Oral presentation at the OECS11 conference, titled Strong coupling revisited.
19. Cardiff (U.K.), October 2009: Seminar at Cardiff University, titled Quantum dots in microcavities: where we are and where to go.
20. London (U.K.), February 2010: Poster at The Royal Society for the Newton International Fellowship Event, titled Quantum information processing with BEC of polaritons.
21. Cuernavaca (Mexico), April 2010: Poster presentation at PLMCN10, titled Dephasing of strong-coupling in the nonlinear regime.
22. Saint Petersburg (Russia), June 2010: Seminar at IOFFE institute, titled Strong coupling with quantum dots in microcavities.
23. Saint Petersburg (Russia), June 2010: Oral presentation at 18th International Symposium NANOSTRUCTURES: Physics and Technology, titled Strong coupling and entanglement of two coupled quantum dots.
24. Munich (Germany), July 2010: Seminar at Technische Universität München, titled Polariton physics in semiconductor microcavities.
25. Seoul (South Korea), July 2010: Oral presentation at ICPS30 (International Conference on the Physics of Semiconductors), titled Strong coupling and entanglement of two coupled quantum dots.
26. London (U.K.), September 2010: Seminar at University College London.