2002Low Temperature PhysicsRequires access

On the transverse magnetization of the anisotropic superconductor 2H–NbSe2

V. A. Sirenko, N. Makedonska, Yu. A. Shabakayeva, R. Schleser

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Abstract

Torque measurements were performed on a high-quality single crystal of the uniaxial superconductor 2H–NbSe2 in a tilted magnetic field 0–200 kG, in the temperature range 1.5–4.2 K. The transverse component of the absolute magnetization was derived in a magnetic field directed at an angle of 77° to the axis of anisotropy, and its field dependence was analyzed in a reversible domain of the mixed state. The penetration depth and anisotropy characteristics were obtained for the sample under study.

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What this paper is about

Torque measurements were performed on a high-quality single crystal of the uniaxial superconductor 2H–NbSe2 in a tilted magnetic field 0–200 kG, in the temperature range 1.5–4.2 K. The transverse component of the absolute magnetization was derived in a magnetic field directed at an angle of 77° to the axis of anisotropy, and its field dependence was analyzed in a reversible domain of the mixed state. The penetration depth and anisotropy characteristics were obtained for the sample under study.

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Available abstract

Torque measurements were performed on a high-quality single crystal of the uniaxial superconductor 2H–NbSe2 in a tilted magnetic field 0–200 kG, in the temperature range 1.5–4.2 K. The transverse component of the absolute magnetization was derived in a magnetic field directed at an angle of 77° to the axis of anisotropy, and its field dependence was analyzed in a reversible domain of the mixed state. The penetration depth and anisotropy characteristics were obtained for the sample under study.

Key concepts: Condensed matter physics, Magnetization, Anisotropy, Superconductivity, Materials science, Single domain, Magnetic anisotropy, Transverse plane

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