Artículo

El editor solo permite decargar el artículo en su versión post-print desde el repositorio. Por favor, si usted posee dicha versión, enviela a
Consulte la política de Acceso Abierto del editor

Abstract:

The structure and stability of superfluid 4He systems with cylindrical symmetry are studied. Ground-state energies and density profiles are computed by using density-functional approaches. A model to understand the energetics of cylindrical systems is developed by following the main ideas of the Droplet Model utilized to describe spherical clusters. The necessary condition for stability is formulated by imposing a positive longitudinal isothermal compressibility along the principal axis of the cylinder. It is shown that free cylinders of 4He at T = 0 K are unstable. As an example of the evolution towards stable systems, results for liquid 4He confined by cylindrical nanopores in Cs are reported.

Registro:

Documento: Artículo
Título:Structure and stability of superfluid 4He systems with cylindrical symmetry
Autor:Szybisz, L.; Gatica, S.M.
Filiación:Laboratorio TANDAR, Departamento de Física, Comisión Nacional de Energía Atómica, Avenida del Libertador 8250, RA-1429 Buenos Aires, Argentina
Departamento de Física, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, RA-1428 Buenos Aires, Argentina
Palabras clave:helium; article; chemical structure; compression; density; energy; mathematical model; molecular stability; temperature dependence
Año:2001
Volumen:64
Número:22
Página de inicio:2245231
Página de fin:22452313
Título revista:Physical Review B - Condensed Matter and Materials Physics
Título revista abreviado:Phys. Rev. B Condens. Matter Mater. Phys.
ISSN:01631829
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_01631829_v64_n22_p2245231_Szybisz

Referencias:

  • Atkins, K.R., Seki, H., Condon, E.U., (1956) Phys. Rev., 102, p. 582
  • Cole, M.W., Saam, W.F., (1974) Phys. Rev. Lett., 32, p. 985
  • Saam, W.F., Cole, M.W., (1975) Phys. Rev. B, 11, p. 1086
  • Godshalk, K.M., Hallock, R.B., (1987) Phys. Rev. B, 36, p. 8294
  • Ebbesen, T.W., (1996) Physics Today, 49 (6), p. 26
  • Dresselhaus, M.S., Dresselhaus, G., Eklund, P.E., (1997) Science of Fullerenes and carbon Nanotubes, , Academic, New York
  • Stan, G., Cole, M.W., (1998) Surf. Sci., 395, p. 280
  • Teizer, W., Hallock, R.B., Dujardin, E., Ebbesen, T.W., (1999) Phys. Rev. Lett., 82, p. 5305
  • (2000) Phys. Rev. Lett., 84, p. 1844E
  • Cole, M.W., Crespi, V.H., Stan, G., Ebner, C., Hartman, J.M., Moroni, S., Boninsegni, M., (2000) Phys. Rev. Lett., 84, p. 3883
  • Gatica, S.M., Stan, G., Calbi, M.M., Johnson, J.K., Cole, M.W., (2000) J. Low Temp. Phys., 120, p. 337
  • Cole, M.W., (1995) J. Low Temp. Phys., 101, p. 25
  • Hallock, R.B., (1995) J. Low Temp. Phys., 101, p. 31
  • Phillips, J.A., Taborek, P., Rutledge, J.E., (1998) J. Low Temp. Phys., 113, p. 829
  • Phillips, J.A., Ross, D., Taborek, P., Rutledge, J.E., (1998) Phys. Rev. B, 58, p. 3361
  • Szybisz, L., (2000) Phys. Rev. B, 62, p. 3986
  • Szybisz, L., (2000) Phys. Rev. B, 62, p. 12381
  • Ancilotto, F., Faccin, F., Toigo, F., (2000) Phys. Rev. B, 62, p. 17035
  • Ross, D., Rutledge, J.E., Taborek, P., (1997) Science, 278, p. 664
  • Stringari, S., Treiner, J., (1987) J. Chem. Phys., 87, p. 5021
  • Stringari, S., Treiner, J., (1987) Phys. Rev. B, 36, p. 8369
  • Dupont-Roc, J., Himbert, M., Pavloff, N., Treiner, J., (1990) J. Low Temp. Phys., 81, p. 31
  • Cheng, E., Cole, M.W., Saam, W.F., Treiner, J., (1992) Phys. Rev. B, 46, p. 13967
  • (1993) Phys. Rev. B, 47, p. 14661
  • Cheng, E., Cole, W.M., Dupont-Roc, J., Saam, W.F., Treiner, J., (1993) Rev. Mod. Phys., 65, p. 557
  • Barranco, M., Hernández, E.S., (1994) Phys. Rev. B, 49, p. 12078
  • Gatica, S.M., Hernández, E.S., Barranco, M., (1997) J. Chem. Phys., 107, p. 927
  • Dalfovo, F., Lastri, A., Pricaupenko, L., Stringari, S., Treiner, J., (1995) Phys. Rev. B, 52, p. 1193
  • Lastri, A., Dalfovo, F., Pitaevskii, L., Stringari, S., (1995) J. Low Temp. Phys., 96, p. 227
  • Szybisz, L., (1997) Phys. Rev. B, 56, p. 11845
  • Szybisz, L., (1998) Phys. Rev. B, 58, p. 109
  • Szybisz, L., (2000) Eur. Phys. J. B, 14, p. 733
  • Pricaupenko, L., Treiner, J., (1994) Phys. Rev. Lett., 72, p. 2215
  • Lewerenz, M., (1997) J. Chem. Phys., 106, p. 4596
  • Safran, S.A., (1994) Statistical Thermodynamics of Surfaces, Interfaces, and Membranes, , (Addison-Wesley, Reading, Massachusetts) Sec. 3.4
  • Clements, B.E., Forbert, H., Krotscheck, E., Saarela, M., (1994) J. Low Temp. Phys., 95, p. 849
  • Dzyaloshinskii, I.E., Lifshitz, E.M., Pitaevskii, L.P., (1961) Adv. Phys., 10, p. 165
  • De Boer, J., Michels, A., (1938) Physica (Amsterdam), 6, p. 945
  • Vallés, J.L., Schmidt, K.E., (1988) Phys. Rev. B, 38, p. 2879
  • Chin, S.A., Krotscheck, E., (1995) Phys. Rev. B, 52, p. 10405
  • Szybisz, L., (2000) Physica A, 283, p. 193
  • Guo, H.M., Edwards, D.O., Sarwinski, R.E., Tough, J.T., (1971) Phys. Rev. Lett., 27, p. 1259
  • Edwards, D.O., Saam, W.F., (1978) Progress in Low Temperature Physics, 7 A. , edited by D.F.Brewer (North-Holland, Amsterdam). Chap. 4
  • Iino, M., Suzuki, M., Ikushima, A.J., (1985) J. Low Temp. Phys., 61, p. 155
  • Roche, P., Deville, G., Appleyard, N.J., Williams, F.I.B., (1997) J. Low Temp. Phys., 106, p. 565
  • Ancilotto, F., Cheng, E., Cole, M.W., Toigo, F., (1995) Z. Phys. B: Condens. Matter, 98, p. 323
  • Patil, S.H., (1991) J. Chem. Phys., 94, p. 8089
  • Kittel, C., (1986) Introduction to Solid State Physics, , (Wiley, New York), Chap. 1
  • Calbi, M.M., Toigo, F., Gatica, S.M., Cole, M.W., (1999) Phys. Rev. B, 60, p. 14935
  • Myers, W.D., Swiatecki, W.J., (1969) Ann. Phys., 55, p. 395
  • Treiner, J., Myers, W.D., Swiatecki, W.J., Weiss, M.S., (1986) Nucl. Phys. A, 452, p. 93
  • Szybisz, L., (1999) J. Low Temp. Phys., 116, p. 215
  • Rowlinson, J.S., Widom, B., (1982) Molecular Theory of Capillarity, , Clarendon Press, Oxford
  • Ebner, C., Saam, W.F., (1975) Phys. Rev. B, 12, p. 923
  • Szybisz, L., unpublished; Harms, J., Toennies, J.P., Dalfovo, F., (1998) Phys. Rev. B, 58, p. 3341

Citas:

---------- APA ----------
Szybisz, L. & Gatica, S.M. (2001) . Structure and stability of superfluid 4He systems with cylindrical symmetry. Physical Review B - Condensed Matter and Materials Physics, 64(22), 2245231-22452313.
Recuperado de https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_01631829_v64_n22_p2245231_Szybisz [ ]
---------- CHICAGO ----------
Szybisz, L., Gatica, S.M. "Structure and stability of superfluid 4He systems with cylindrical symmetry" . Physical Review B - Condensed Matter and Materials Physics 64, no. 22 (2001) : 2245231-22452313.
Recuperado de https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_01631829_v64_n22_p2245231_Szybisz [ ]
---------- MLA ----------
Szybisz, L., Gatica, S.M. "Structure and stability of superfluid 4He systems with cylindrical symmetry" . Physical Review B - Condensed Matter and Materials Physics, vol. 64, no. 22, 2001, pp. 2245231-22452313.
Recuperado de https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_01631829_v64_n22_p2245231_Szybisz [ ]
---------- VANCOUVER ----------
Szybisz, L., Gatica, S.M. Structure and stability of superfluid 4He systems with cylindrical symmetry. Phys. Rev. B Condens. Matter Mater. Phys. 2001;64(22):2245231-22452313.
Available from: https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_01631829_v64_n22_p2245231_Szybisz [ ]