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Lasing in Bose-Fermi mixtures

Light amplification by stimulated emission of radiation, well-known for revolutionising photonic science, has been realised primarily in fermionic systems including widely applied diode lasers. The prerequisite for fermionic lasing is the inversion of electronic population, which governs the lasing...

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Autores principales: Kochereshko, Vladimir P., Durnev, Mikhail V., Besombes, Lucien, Mariette, Henri, Sapega, Victor F., Askitopoulos, Alexis, Savenko, Ivan G., Liew, Timothy C. H., Shelykh, Ivan A., Platonov, Alexey V., Tsintzos, Simeon I., Hatzopoulos, Z., Savvidis, Pavlos G., Kalevich, Vladimir K., Afanasiev, Mikhail M., Lukoshkin, Vladimir A., Schneider, Christian, Amthor, Matthias, Metzger, Christian, Kamp, Martin, Hoefling, Sven, Lagoudakis, Pavlos, Kavokin, Alexey
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4731768/
https://www.ncbi.nlm.nih.gov/pubmed/26822483
http://dx.doi.org/10.1038/srep20091
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author Kochereshko, Vladimir P.
Durnev, Mikhail V.
Besombes, Lucien
Mariette, Henri
Sapega, Victor F.
Askitopoulos, Alexis
Savenko, Ivan G.
Liew, Timothy C. H.
Shelykh, Ivan A.
Platonov, Alexey V.
Tsintzos, Simeon I.
Hatzopoulos, Z.
Savvidis, Pavlos G.
Kalevich, Vladimir K.
Afanasiev, Mikhail M.
Lukoshkin, Vladimir A.
Schneider, Christian
Amthor, Matthias
Metzger, Christian
Kamp, Martin
Hoefling, Sven
Lagoudakis, Pavlos
Kavokin, Alexey
author_facet Kochereshko, Vladimir P.
Durnev, Mikhail V.
Besombes, Lucien
Mariette, Henri
Sapega, Victor F.
Askitopoulos, Alexis
Savenko, Ivan G.
Liew, Timothy C. H.
Shelykh, Ivan A.
Platonov, Alexey V.
Tsintzos, Simeon I.
Hatzopoulos, Z.
Savvidis, Pavlos G.
Kalevich, Vladimir K.
Afanasiev, Mikhail M.
Lukoshkin, Vladimir A.
Schneider, Christian
Amthor, Matthias
Metzger, Christian
Kamp, Martin
Hoefling, Sven
Lagoudakis, Pavlos
Kavokin, Alexey
author_sort Kochereshko, Vladimir P.
collection PubMed
description Light amplification by stimulated emission of radiation, well-known for revolutionising photonic science, has been realised primarily in fermionic systems including widely applied diode lasers. The prerequisite for fermionic lasing is the inversion of electronic population, which governs the lasing threshold. More recently, bosonic lasers have also been developed based on Bose-Einstein condensates of exciton-polaritons in semiconductor microcavities. These electrically neutral bosons coexist with charged electrons and holes. In the presence of magnetic fields, the charged particles are bound to their cyclotron orbits, while the neutral exciton-polaritons move freely. We demonstrate how magnetic fields affect dramatically the phase diagram of mixed Bose-Fermi systems, switching between fermionic lasing, incoherent emission and bosonic lasing regimes in planar and pillar microcavities with optical and electrical pumping. We collected and analyzed the data taken on pillar and planar microcavity structures at continuous wave and pulsed optical excitation as well as injecting electrons and holes electronically. Our results evidence the transition from a Bose gas to a Fermi liquid mediated by magnetic fields and light-matter coupling.
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spelling pubmed-47317682016-02-03 Lasing in Bose-Fermi mixtures Kochereshko, Vladimir P. Durnev, Mikhail V. Besombes, Lucien Mariette, Henri Sapega, Victor F. Askitopoulos, Alexis Savenko, Ivan G. Liew, Timothy C. H. Shelykh, Ivan A. Platonov, Alexey V. Tsintzos, Simeon I. Hatzopoulos, Z. Savvidis, Pavlos G. Kalevich, Vladimir K. Afanasiev, Mikhail M. Lukoshkin, Vladimir A. Schneider, Christian Amthor, Matthias Metzger, Christian Kamp, Martin Hoefling, Sven Lagoudakis, Pavlos Kavokin, Alexey Sci Rep Article Light amplification by stimulated emission of radiation, well-known for revolutionising photonic science, has been realised primarily in fermionic systems including widely applied diode lasers. The prerequisite for fermionic lasing is the inversion of electronic population, which governs the lasing threshold. More recently, bosonic lasers have also been developed based on Bose-Einstein condensates of exciton-polaritons in semiconductor microcavities. These electrically neutral bosons coexist with charged electrons and holes. In the presence of magnetic fields, the charged particles are bound to their cyclotron orbits, while the neutral exciton-polaritons move freely. We demonstrate how magnetic fields affect dramatically the phase diagram of mixed Bose-Fermi systems, switching between fermionic lasing, incoherent emission and bosonic lasing regimes in planar and pillar microcavities with optical and electrical pumping. We collected and analyzed the data taken on pillar and planar microcavity structures at continuous wave and pulsed optical excitation as well as injecting electrons and holes electronically. Our results evidence the transition from a Bose gas to a Fermi liquid mediated by magnetic fields and light-matter coupling. Nature Publishing Group 2016-01-29 /pmc/articles/PMC4731768/ /pubmed/26822483 http://dx.doi.org/10.1038/srep20091 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Kochereshko, Vladimir P.
Durnev, Mikhail V.
Besombes, Lucien
Mariette, Henri
Sapega, Victor F.
Askitopoulos, Alexis
Savenko, Ivan G.
Liew, Timothy C. H.
Shelykh, Ivan A.
Platonov, Alexey V.
Tsintzos, Simeon I.
Hatzopoulos, Z.
Savvidis, Pavlos G.
Kalevich, Vladimir K.
Afanasiev, Mikhail M.
Lukoshkin, Vladimir A.
Schneider, Christian
Amthor, Matthias
Metzger, Christian
Kamp, Martin
Hoefling, Sven
Lagoudakis, Pavlos
Kavokin, Alexey
Lasing in Bose-Fermi mixtures
title Lasing in Bose-Fermi mixtures
title_full Lasing in Bose-Fermi mixtures
title_fullStr Lasing in Bose-Fermi mixtures
title_full_unstemmed Lasing in Bose-Fermi mixtures
title_short Lasing in Bose-Fermi mixtures
title_sort lasing in bose-fermi mixtures
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4731768/
https://www.ncbi.nlm.nih.gov/pubmed/26822483
http://dx.doi.org/10.1038/srep20091
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