Nanotube-based source of charges for experiments with solid helium at low temperatures

Methods of preparation of the field-emission sources of charges from carbon nanotubes suitable for study of injected
 charges in solid helium at low temperatures T < 1 K are presented. The sources have been prepared by arc
 discharge deposition of nanotubes onto a flat copper...

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Published in:Физика низких температур
Date:2015
Main Authors: Borisenko, D.N., Walmsley, P.M., Golov, A.I., Kolesnikov, N.N., Kotov, Yu.V., Levchenko, A.A., Mezhov-Deglin, L.P., Fear, M.J.
Format: Article
Language:English
Published: Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України 2015
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Online Access:https://nasplib.isofts.kiev.ua/handle/123456789/127955
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Journal Title:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Cite this:Nanotube-based source of charges for experiments with solid helium at low temperatures
 / D.N. Borisenko1, P.M. Walmsley, A.I. Golov, N.N. Kolesnikov, Yu.V. Kotov, A.A. Levchenko, L.P. Mezhov-Deglin, M.J. Fear // Физика низких температур. — 2015. — Т. 41, № 7. — С. 729–732. — Бібліогр.: 11 назв. — англ.

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Digital Library of Periodicals of National Academy of Sciences of Ukraine
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author Borisenko, D.N.
Walmsley, P.M.
Golov, A.I.
Kolesnikov, N.N.
Kotov, Yu.V.
Levchenko, A.A.
Mezhov-Deglin, L.P.
Fear, M.J.
author_facet Borisenko, D.N.
Walmsley, P.M.
Golov, A.I.
Kolesnikov, N.N.
Kotov, Yu.V.
Levchenko, A.A.
Mezhov-Deglin, L.P.
Fear, M.J.
citation_txt Nanotube-based source of charges for experiments with solid helium at low temperatures
 / D.N. Borisenko1, P.M. Walmsley, A.I. Golov, N.N. Kolesnikov, Yu.V. Kotov, A.A. Levchenko, L.P. Mezhov-Deglin, M.J. Fear // Физика низких температур. — 2015. — Т. 41, № 7. — С. 729–732. — Бібліогр.: 11 назв. — англ.
collection DSpace DC
container_title Физика низких температур
description Methods of preparation of the field-emission sources of charges from carbon nanotubes suitable for study of injected
 charges in solid helium at low temperatures T < 1 K are presented. The sources have been prepared by arc
 discharge deposition of nanotubes onto a flat copper substrate or by mechanical rubbing of nanotubes into porous
 metal surface. The test study of the voltage-current characteristics of a diode cell with the nanotube source in superfluid
 He II have shown that at voltages above 120 V one can observe a relatively large current I ≥ 10⁻¹³ A of negative
 charges in liquid helium. The field and temperature dependences of positive and negative currents in solid ⁴He
 were studied in samples grown by the blocked capillary technique. Usage of the nanotube based source of injected
 charges had permitted us for the first time to observe motion of the positive charges in solid helium at temperatures
 below 0.1 К. The current-voltage dependence could be described by a power law I ~ Uα, with the value of the exponent α >> 2, much higher than what one would expect for the regime of space charge limited currents.
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spelling Borisenko, D.N.
Walmsley, P.M.
Golov, A.I.
Kolesnikov, N.N.
Kotov, Yu.V.
Levchenko, A.A.
Mezhov-Deglin, L.P.
Fear, M.J.
2017-12-31T16:37:26Z
2017-12-31T16:37:26Z
2015
Nanotube-based source of charges for experiments with solid helium at low temperatures
 / D.N. Borisenko1, P.M. Walmsley, A.I. Golov, N.N. Kolesnikov, Yu.V. Kotov, A.A. Levchenko, L.P. Mezhov-Deglin, M.J. Fear // Физика низких температур. — 2015. — Т. 41, № 7. — С. 729–732. — Бібліогр.: 11 назв. — англ.
0132-6414
PACS: 67.80.B–
https://nasplib.isofts.kiev.ua/handle/123456789/127955
Methods of preparation of the field-emission sources of charges from carbon nanotubes suitable for study of injected
 charges in solid helium at low temperatures T < 1 K are presented. The sources have been prepared by arc
 discharge deposition of nanotubes onto a flat copper substrate or by mechanical rubbing of nanotubes into porous
 metal surface. The test study of the voltage-current characteristics of a diode cell with the nanotube source in superfluid
 He II have shown that at voltages above 120 V one can observe a relatively large current I ≥ 10⁻¹³ A of negative
 charges in liquid helium. The field and temperature dependences of positive and negative currents in solid ⁴He
 were studied in samples grown by the blocked capillary technique. Usage of the nanotube based source of injected
 charges had permitted us for the first time to observe motion of the positive charges in solid helium at temperatures
 below 0.1 К. The current-voltage dependence could be described by a power law I ~ Uα, with the value of the exponent α >> 2, much higher than what one would expect for the regime of space charge limited currents.
This work was partially supported by grant
 RFRB #12-02-00581.
en
Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України
Физика низких температур
10th International Conference on Cryocrystals and Quantum Crystals (Final part)
Nanotube-based source of charges for experiments with solid helium at low temperatures
Article
published earlier
spellingShingle Nanotube-based source of charges for experiments with solid helium at low temperatures
Borisenko, D.N.
Walmsley, P.M.
Golov, A.I.
Kolesnikov, N.N.
Kotov, Yu.V.
Levchenko, A.A.
Mezhov-Deglin, L.P.
Fear, M.J.
10th International Conference on Cryocrystals and Quantum Crystals (Final part)
title Nanotube-based source of charges for experiments with solid helium at low temperatures
title_full Nanotube-based source of charges for experiments with solid helium at low temperatures
title_fullStr Nanotube-based source of charges for experiments with solid helium at low temperatures
title_full_unstemmed Nanotube-based source of charges for experiments with solid helium at low temperatures
title_short Nanotube-based source of charges for experiments with solid helium at low temperatures
title_sort nanotube-based source of charges for experiments with solid helium at low temperatures
topic 10th International Conference on Cryocrystals and Quantum Crystals (Final part)
topic_facet 10th International Conference on Cryocrystals and Quantum Crystals (Final part)
url https://nasplib.isofts.kiev.ua/handle/123456789/127955
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