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Перегляд Физика низких температур за назвою

Репозиторій DSpace/Manakin

Перегляд Физика низких температур за назвою

Сортувати за: Порядок: Результатів:

  • Volovik, G.E. (Физика низких температур, 1998)
    Superfluid phases of ³He are quantum liquids with the interacting fermionic and bosonic fields. In many respects they can simulate the interacting quantum fields in the physical vacuum. One can observe analogs of such ...
  • Kondaurova, L.P.; Nemirovskii, S.K.; Nedoboiko, M.V. (Физика низких температур, 2003)
    We present the results of simulation of the chaotic dynamics of quantized vortices in the bulk of superfluid He II. Evolution of vortex lines is calculated on the base of the Biot-Savart law. The dissipative effects appeared ...
  • Fornalski, D.; García Sakai, V.; Postorino, S.; Silverwood, I.; Goodway, C.; Bones, J.; Kirichek, O.; Fernandez-Alonso, F. (Физика низких температур, 2019)
    Both Differential Scanning Calorimetry (DSC) and Quasi-elastic Neutron Scattering (QENS) are powerful analytical tools actively used in studies of phase transitions in complex solid and liquid systems. DSC is typically ...
  • Balbashov, A.M.; Voronchikhina, M.E.; Iskhakova, L.D.; Ivanov, V.Y.; Mukhin, A.A. (Физика низких температур, 2017)
    Floating zone melting method with optical heating is elaborated to grow single crystals of the substituted hexaferrites BaTixCoxFe₁₂–₂xO₁₉ and SrxTixCoxFe₁₂–₂xO₁₉ (0.8 ≤ x ≤ 2). The dynamics of the growth process is studied ...
  • Petrov, E.G.; Ostrovsky, V. (Физика низких температур, 2010)
    Magnon transmission between ferromagnetic contacts coupled by a linear ferromagnetic chain is studied at the condition when the chain exhibits itself as a tunnel magnon transmitter. It is shown that dependently on magnon ...
  • Pärs, M.; Palm, V.; Kikas, J. (Физика низких температур, 2010)
    Our data on the distribution of purely-electronic linewidths of terrylene single molecules in incommensurate biphenyl crystals are compared with the data of other groups for different low-temperature organic solid hosts ...
  • Moskalets, Michael (Физика низких температур, 2017)
    The state of particles injected onto the surface of the Fermi sea depends essentially on the temperature. The pure state injected at zero temperature becomes a mixed state if injected at finite temperature. Moreover the ...
  • Chigvinadze, J.G.; Mamniashvili, G.I.; Sharimanov, Yu.G. (Физика низких температур, 2004)
    In the framework of the Mims transformation matrix method the equations for the nuclear magnetizations are obtained which describe the dynamics of nuclear spin-systems with strong Larmor and Rabi inhomogeneous broadenings ...
  • Van der Post, N.; Mettes, F.; Mydoch, J.A.; Ruitenbeek, J.M.van; Yanson, I.K. (Физика низких температур, 1996)
    The low temperature dVldl(V) characteristics are investigated for point contacts of various sizes (d ≈ 2-35 nm) using a mechanically controlled breakjunction of a Kondo alloy CuFe (0.1 at. %). A size effect, being manifested ...
  • Yanson, I.K.; Fisun, V.V.; Bobrov, N.L.; Mydosh, J.A.; van Ruitenbeek, J.M. (Физика низких температур, 1998)
    The size-effect of Kondo-scattering in nanometer-sized metallic point contacts is measured with the simplified, mechanically-controlled break-junction technique for CuMn alloy of different Mn concentrations: 0.017; 0.035; ...
  • Nedorezov, S.S. (Физика низких температур, 2007)
    Quantum size effect, predicted by I.M. Lifshits and A.M. Kosevich [Izv. Akad. Nauk SSSR, seriya fiz. 19, 395 (1955)], was investigates in a many works. In the basis of analysis of quantum size oscillations of thermodynamics and ...
  • Kharadze, G. A.; Suramlishvili, N.G.; Vachnadze, G.E. (Физика низких температур, 1997)
    Frequency spectrum of small-amplitude oscillations of magnetization against the background of coherently precessing (phase-correlated) spin modes in superfluid ³He placed in a strong magnetic field depends on the magnitude ...
  • Ramazanoglu, M.; Laver, M.; Yagmurcu, A.; Cho, E.-M.; Lee, S.-I.; Knigavko, A.; Gaulin, B.D. (Физика низких температур, 2014)
    The superconducting and magnetic properties of HoNi₂B₂C single crystals are investigated through transport, magnetometry and small-angle neutron scattering (SANS) measurements. In the magnetic phases that enter below the ...
  • Lau, J.T.; Ehrke, H.-U.; Achleitner, A.; Wurth, W. (Физика низких температур, 2003)
    Soft landing of mass selected clusters in rare gas matrices is a technique used to preserve mass selection in cluster deposition. To prevent fragmentation upon deposition, the substrate is covered with rare gas matrices ...
  • Strzhemechny, M.A. (Физика низких температур, 1996)
  • Galkina, E.G.; Galkin, A.Yu.; Ivanov, B.A. (Физика низких температур, 2008)
    Isotropic antiferromagnets shows a reach variety of magnetic solitons with nontrivial static and dynamic properties. One-dimensional soliton elementary excitations have a periodic dispersion law. For two-dimensional case, ...
  • Peradze, G.M.; Tsintsadze, N.L. (Физика низких температур, 2019)
    To be based on the new quantum kinetic equation of Fermi particles, which recently was derived by N.L. Tsintsadze and L.N. Tsintsadze, a general quantum dispersion equation for almost ideal Fermi gas is derived and studied ...
  • Kuplevakhsky, S.V.; Omelyanchouk, A.N.; Yerin, Y.S. (Физика низких температур, 2011)
    In the framework of the Ginzburg-Landau approach, we present a self-consistent theory of specific soliton states in mesoscopic (thin-walled) two-band-superconducting cylinders in external parallel magnetic fields. Such ...
  • Engelbrecht, J.; Peets, T.; Tamm, K. (Физика низких температур, 2018)
    In this paper two Boussinesq-type mathematical models are described which lead to solitonic solutions. One case corresponds to microstructured solids, another case to biomembranes. The emergence of soliton trains in both ...
  • Kovalev, A.S.; Prilepsky, J.E.; Gredeskul, S.A.; Derevyanko, S.A. (Физика низких температур, 2008)
    An exact formula for the transmission time in the disordered nonlinear soliton-bearing classical one-dimensional system is obtained.

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