Bound States of [Formula presented] at the Edge of a [Formula presented] Drop on a Cesium Surface

We show that small amounts of [Formula presented] atoms, added to a [Formula presented] drop deposited on a flat cesium surface at zero temperature, populate bound states localized at the contact line. These edge states show up for drops large enough to develop well defined surface and bulk regions...

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Autores principales: Mayol, R., Barranco, M., Hernández, E.S., Pi, M., Guilleumas, M.
Formato: JOUR
Acceso en línea:http://hdl.handle.net/20.500.12110/paper_00319007_v90_n18_p4_Mayol
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spelling todo:paper_00319007_v90_n18_p4_Mayol2023-10-03T14:43:09Z Bound States of [Formula presented] at the Edge of a [Formula presented] Drop on a Cesium Surface Mayol, R. Barranco, M. Hernández, E.S. Pi, M. Guilleumas, M. We show that small amounts of [Formula presented] atoms, added to a [Formula presented] drop deposited on a flat cesium surface at zero temperature, populate bound states localized at the contact line. These edge states show up for drops large enough to develop well defined surface and bulk regions together with a contact line, and they are structurally different from the well-known Andreev states that appear at the free surface and at the liquid-solid interface of films. We illustrate the one-body density of [Formula presented] in a drop with 1000 [Formula presented] atoms, and show that for a sufficiently large number of impurities the density profiles spread beyond the edge, coating both the curved drop surface and its flat base and eventually isolating it from the substrate. © 2003 The American Physical Society. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_00319007_v90_n18_p4_Mayol
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
description We show that small amounts of [Formula presented] atoms, added to a [Formula presented] drop deposited on a flat cesium surface at zero temperature, populate bound states localized at the contact line. These edge states show up for drops large enough to develop well defined surface and bulk regions together with a contact line, and they are structurally different from the well-known Andreev states that appear at the free surface and at the liquid-solid interface of films. We illustrate the one-body density of [Formula presented] in a drop with 1000 [Formula presented] atoms, and show that for a sufficiently large number of impurities the density profiles spread beyond the edge, coating both the curved drop surface and its flat base and eventually isolating it from the substrate. © 2003 The American Physical Society.
format JOUR
author Mayol, R.
Barranco, M.
Hernández, E.S.
Pi, M.
Guilleumas, M.
spellingShingle Mayol, R.
Barranco, M.
Hernández, E.S.
Pi, M.
Guilleumas, M.
Bound States of [Formula presented] at the Edge of a [Formula presented] Drop on a Cesium Surface
author_facet Mayol, R.
Barranco, M.
Hernández, E.S.
Pi, M.
Guilleumas, M.
author_sort Mayol, R.
title Bound States of [Formula presented] at the Edge of a [Formula presented] Drop on a Cesium Surface
title_short Bound States of [Formula presented] at the Edge of a [Formula presented] Drop on a Cesium Surface
title_full Bound States of [Formula presented] at the Edge of a [Formula presented] Drop on a Cesium Surface
title_fullStr Bound States of [Formula presented] at the Edge of a [Formula presented] Drop on a Cesium Surface
title_full_unstemmed Bound States of [Formula presented] at the Edge of a [Formula presented] Drop on a Cesium Surface
title_sort bound states of [formula presented] at the edge of a [formula presented] drop on a cesium surface
url http://hdl.handle.net/20.500.12110/paper_00319007_v90_n18_p4_Mayol
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