Exciton density pattern formation in laser irradiated quantum wells under electrodes of various shapes
The condensation of indirect excitons in double quantum wells is studied in an electric field created by electrodes of different shapes. The finite value of the exciton lifetime, the pumping and nonuniformity of the electric field under the electrode are taken into account. It is shown that islands...
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| Veröffentlicht in: | Физика низких температур |
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| Datum: | 2014 |
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Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України
2014
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| Назва журналу: | Digital Library of Periodicals of National Academy of Sciences of Ukraine |
| Zitieren: | Exciton density pattern formation in laser irradiated quantum wells under electrodes of various shapes / V.V. Tomylko, I.Yu. Goliney, A.A. Chernyuk, V.I. Sugakov // Физика низких температур. — 2014. — Т. 40, № 8. — С. 975-980. — Бібліогр.: 32 назв. — англ. |
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Tomylko, V.V. Goliney, I.Yu. Chernyuk, A.A. Sugakov, V.I. 2017-06-07T18:41:28Z 2017-06-07T18:41:28Z 2014 Exciton density pattern formation in laser irradiated quantum wells under electrodes of various shapes / V.V. Tomylko, I.Yu. Goliney, A.A. Chernyuk, V.I. Sugakov // Физика низких температур. — 2014. — Т. 40, № 8. — С. 975-980. — Бібліогр.: 32 назв. — англ. 0132-6414 PACS 71.35.Lk, 73.21.Fg https://nasplib.isofts.kiev.ua/handle/123456789/119637 The condensation of indirect excitons in double quantum wells is studied in an electric field created by electrodes of different shapes. The finite value of the exciton lifetime, the pumping and nonuniformity of the electric field under the electrode are taken into account. It is shown that islands of exciton condensed phase emerge under electrodes when the pumping exceeds a certain threshold value. They appear first under the rim where the potential energy of excitons has a dip. Calculations predict a complicated evolution of the exciton density distribution: from the gaseous phase at low laser intensities to the condensed phase in the whole area under the electrode at larger intensities. Therefore, the configurations of the exciton condensed phase may be manipulated by choosing the setups with conductive electrodes of different shapes via forming specific potentials of the electrical field and controlled by the level of the laser irradiation. en Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України Физика низких температур Международная научно-практическая конференция «Нанотехнологии и наноматериалы» Exciton density pattern formation in laser irradiated quantum wells under electrodes of various shapes Article published earlier |
| institution |
Digital Library of Periodicals of National Academy of Sciences of Ukraine |
| collection |
DSpace DC |
| title |
Exciton density pattern formation in laser irradiated quantum wells under electrodes of various shapes |
| spellingShingle |
Exciton density pattern formation in laser irradiated quantum wells under electrodes of various shapes Tomylko, V.V. Goliney, I.Yu. Chernyuk, A.A. Sugakov, V.I. Международная научно-практическая конференция «Нанотехнологии и наноматериалы» |
| title_short |
Exciton density pattern formation in laser irradiated quantum wells under electrodes of various shapes |
| title_full |
Exciton density pattern formation in laser irradiated quantum wells under electrodes of various shapes |
| title_fullStr |
Exciton density pattern formation in laser irradiated quantum wells under electrodes of various shapes |
| title_full_unstemmed |
Exciton density pattern formation in laser irradiated quantum wells under electrodes of various shapes |
| title_sort |
exciton density pattern formation in laser irradiated quantum wells under electrodes of various shapes |
| author |
Tomylko, V.V. Goliney, I.Yu. Chernyuk, A.A. Sugakov, V.I. |
| author_facet |
Tomylko, V.V. Goliney, I.Yu. Chernyuk, A.A. Sugakov, V.I. |
| topic |
Международная научно-практическая конференция «Нанотехнологии и наноматериалы» |
| topic_facet |
Международная научно-практическая конференция «Нанотехнологии и наноматериалы» |
| publishDate |
2014 |
| language |
English |
| container_title |
Физика низких температур |
| publisher |
Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України |
| format |
Article |
| description |
The condensation of indirect excitons in double quantum wells is studied in an electric field created by electrodes of different shapes. The finite value of the exciton lifetime, the pumping and nonuniformity of the electric field under the electrode are taken into account. It is shown that islands of exciton condensed phase emerge under electrodes when the pumping exceeds a certain threshold value. They appear first under the rim where the potential energy of excitons has a dip. Calculations predict a complicated evolution of the exciton density distribution: from the gaseous phase at low laser intensities to the condensed phase in the whole area under the electrode at larger intensities. Therefore, the configurations of the exciton condensed phase may be manipulated by choosing the setups with conductive electrodes of different shapes via forming specific potentials of the electrical field and controlled by the level of the laser irradiation.
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| issn |
0132-6414 |
| url |
https://nasplib.isofts.kiev.ua/handle/123456789/119637 |
| citation_txt |
Exciton density pattern formation in laser irradiated quantum wells under electrodes of various shapes / V.V. Tomylko, I.Yu. Goliney, A.A. Chernyuk, V.I. Sugakov // Физика низких температур. — 2014. — Т. 40, № 8. — С. 975-980. — Бібліогр.: 32 назв. — англ. |
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AT tomylkovv excitondensitypatternformationinlaserirradiatedquantumwellsunderelectrodesofvariousshapes AT golineyiyu excitondensitypatternformationinlaserirradiatedquantumwellsunderelectrodesofvariousshapes AT chernyukaa excitondensitypatternformationinlaserirradiatedquantumwellsunderelectrodesofvariousshapes AT sugakovvi excitondensitypatternformationinlaserirradiatedquantumwellsunderelectrodesofvariousshapes |
| first_indexed |
2025-12-07T17:58:50Z |
| last_indexed |
2025-12-07T17:58:50Z |
| _version_ |
1850873301021229056 |