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Перегляд Физика низких температур, 2010, том 36 за назвою

Репозиторій DSpace/Manakin

Перегляд Физика низких температур, 2010, том 36 за назвою

Сортувати за: Порядок: Результатів:

  • Monarkha, Yu.P.; Sokolov, S.S.; Smorodin, A.V.; Studart, N. (Физика низких температур, 2010)
    Decay rates of excited surface electron states on liquid helium are theoretically studied for different electron confinement potentials and in the presence of quantizing magnetic field. Contributions of both one-ripplon ...
  • Varshney, D.; Mansuri, I.; Yogi, A. (Физика низких температур, 2010)
    With a view to explain the thermoelectric effects of La₀.₈Ca₀.₂MnO₃ and La₀.Ce₀.₂MnO₃ polycrystalline samples and to seek the role of scattering mechanism, a systematic investigation of thermopower S(T) in the metallic ...
  • Akimenko, A.I.; Bobba, F.; Giubileo, F.; Gudimenko, V.A.; Piano, S.; Cucolo, A.M. (Физика низких температур, 2010)
    The tunneling spectra of YBa₂Cu₃O₇₋δ break-junctions have been investigated for the tunneling direction close to the node one. The behavior of the zero-bias conductance peak (ZBCP) and Josephson current have been studied ...
  • Kuplevakhsky, S.V.; Glukhov, A.M. (Физика низких температур, 2010)
    We present the exact and complete analytical solution of the classical problem of the Josephson tunnel junction of arbitrary length W ∈ (0, ∞) in the presence of externally applied magnetic fields and transport currents. ...
  • Savchenko, E.V.; Khyzhniy, I.V.; Uyutnov, S.A.; Gumenchuk, G.B.; Ponomaryov, A.N.; Beyer, M.K.; Bondybey, V.E. (Физика низких температур, 2010)
    The formation of excimers (Xe2H)* in solid Xe doped with molecular hydrogen under electron beam is studied using the original two-stage technique of nonstationary (NS) cathodoluminescence (CL) in combination with the current ...
  • Mumtaz, M.; Khan, N. A. (Физика низких температур, 2010)
    The effect of suppression of antiferromagnetic order and charge stripes formation mechanism, by Zn3d¹⁰ (S = 0) substitution at Cu3d⁹ (S = 1/2) sites in CuO₂ planes of Cu₀.₅Tl₀.₅Ba₂Ca₃Cu₄O₁₂–δ, on superconductivity parameters ...
  • Brandt, E.H. (Физика низких температур, 2010)
    The solution of the linearized Ginzburg–Landau theory describing a periodic lattice of vortex lines in type-II superconductors at large inductions and discovered first by Abrikosov, is generalized to nonperiodic vortex ...
  • Omelyanchouk, A.N.; Shekhter, R.I. (Физика низких температур, 2010)
    Igor Orestovich Kulik — a prominent physicist and an outstanding representative of Kharkov’s school of theoretical physics, Corresponding member of the National Academy of Sciences of Ukraine and Ukrainian State Prize ...
  • Koval, Y.; Fistul, M.V.; Ustinov, A.V. (Физика низких температур, 2010)
    We report an experimental and theoretical study of low-voltage resistive states that are observed in small tunnel Josephson junctions under microwave radiation. The studied features emerge from Shapiro steps on the ...
  • Raston, P.L.; Kettwich, S.C.; Anderson, D.T. (Физика низких температур, 2010)
    We report infrared spectroscopic studies of H₂ ortho-para (o/p) conversion in solid hydrogen doped with Clatoms at 2 K while the Cl+H₂(v=1)→HCl+H infrared-induced chemical reaction is occurring. The Cl-atom doped hydrogen ...
  • Kolezhuk, A.K. (Физика низких температур, 2010)
    Renormalization group approach for low-dimensional dilute Bose gases is generalized for the case of multicomponent bosons. As an example, systems of two- and three-component spinor bosons are considered. It is shown that ...
  • Linde, C. van der; Höckendorf, R.F.; Balaj, O.P.; Beyer, M.K. (Физика низких температур, 2010)
    A new method to determine the absolute pressure in an ultra-high vacuum apparatus is tested using ion molecule reactions with CoAr₆⁺. In a collision with a neutral reactant, the complex between Co⁺ and the collision partner ...
  • Yerin, Y.S.; Omelyanchouk, A.N. (Физика низких температур, 2010)
    We developed microscopic theory of Josephson effect in point contacts between dirty two-band superconductors. The general expression for the Josephson current, which is valid for arbitrary temperatures, is obtained. This ...
  • Dolbin, A.V.; Esel'son, V.B.; Gavrilko, V.G.; Manzhelii, V.G.; Vinnikov, N.A.; Popov, S.N. (Физика низких температур, 2010)
    The kinetics of helium gas sorption by a C₆₀ powder and subsequent desorption of the ⁴He impurity from the saturated powder has been investigated in the temperature interval 2–292 K. Evidence is obtained that supports the ...
  • Grechnev, A.; Tretyak, S.M.; Freiman, Yu.A. (Физика низких температур, 2010)
    The lattice distortion parameter δ≡c/a – √8/3 has been calculated as a function of molar volume for the hcp phases of He, Ar, Kr, and Xe. Results from both semi-empirical potentials and density functional theory are ...
  • Lignell, H.; Khriachtchev, L.; Lignell, A.; Räsänen, M. (Физика низких температур, 2010)
    The H + Ar + F reaction leading to HArF formation in an argon matrix is studied at temperatures down to 8 K. The effects of the precursor concentration, deuteration, IR light, and deposition temperature as well as thermal ...
  • Barone, A.; Lombardi, F.; Rotoli, G.; Tafuri, F. (Физика низких температур, 2010)
    The Josephson effect is a probe of unparalleled performances in the study of a variety of macroscopic quantum phenomena. In the present article an overview of important achievements and challenging trends is given referring, ...
  • Matuszewski, M.; Alexander, T. J.; Kivshar, Y. S. (Физика низких температур, 2010)
    We discuss the structure of spin-1 Bose–Einstein condensates in the presence of a homogenous magnetic field. We demonstrate that the phase separation can occur in the ground state of antiferromagnetic (polar) condensates, ...
  • Fedorchenko, A.V.; Grechnev, G.E.; Desnenko, V.A.; Panfilov, A.S.; Volkova, O.S.; Vasiliev, A.N. (Физика низких температур, 2010)
    The magnetic properties of LaFeAsO₀.₈₅F₀.₁ compound were investigated by measurements of dc magnetization at different values of the magnetic field, H = 0.02, 1.0 and 2.0 T, in the temperature range 4.2–300 K. The ...
  • Kakazei, G.N.; Santos, N.M.; Quiros, C.; Velez, M.; Martin, J.I.; Alameda, J.M.; Golub, V.O.; Saliuk, O.Y.; Pogorelov, Yu.G.; Carmo, M.C.; Sobolev, N.A.; Sousa, J.B. (Физика низких температур, 2010)
    Two sets of [Co₀.₇₄Si₀.₂₆0.26(5 nm)/Si(s)]n amorphous films were prepared by magnetron sputtering: one in the form of multilayers with the Si spacer thickness s fixed at 3 nm, and the number of periods n varying from 1 to ...

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