Voir la notice de l'article provenant de la source Math-Net.Ru
@article{UZERU_2012_1_a9, author = {B. K. Kurghinyan}, title = {Modeling of the magnetic field near flat-coil with a view to improving the detection efficiency of fine peculiarities of superconductivity}, journal = {Proceedings of the Yerevan State University. Physical and mathematical sciences}, pages = {53--59}, publisher = {mathdoc}, number = {1}, year = {2012}, language = {en}, url = {http://geodesic.mathdoc.fr/item/UZERU_2012_1_a9/} }
TY - JOUR AU - B. K. Kurghinyan TI - Modeling of the magnetic field near flat-coil with a view to improving the detection efficiency of fine peculiarities of superconductivity JO - Proceedings of the Yerevan State University. Physical and mathematical sciences PY - 2012 SP - 53 EP - 59 IS - 1 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/UZERU_2012_1_a9/ LA - en ID - UZERU_2012_1_a9 ER -
%0 Journal Article %A B. K. Kurghinyan %T Modeling of the magnetic field near flat-coil with a view to improving the detection efficiency of fine peculiarities of superconductivity %J Proceedings of the Yerevan State University. Physical and mathematical sciences %D 2012 %P 53-59 %N 1 %I mathdoc %U http://geodesic.mathdoc.fr/item/UZERU_2012_1_a9/ %G en %F UZERU_2012_1_a9
B. K. Kurghinyan. Modeling of the magnetic field near flat-coil with a view to improving the detection efficiency of fine peculiarities of superconductivity. Proceedings of the Yerevan State University. Physical and mathematical sciences, no. 1 (2012), pp. 53-59. http://geodesic.mathdoc.fr/item/UZERU_2012_1_a9/
[1] S.G. Gevorgyan, T. Kiss et al., “Highly sensitive open-flat coil magnetometer for the $\lambda(H, T) $ measurements in plate-like high-$T_C$ cuprates”, Rev. Sci. Instrum., 71 (2000), 1488–1494 | DOI
[2] S.G. Gevorgyan, G.D. Movsesyan et al., “Modeling of tunnel diode oscillators and their use for some low temperature investigations”, Rev. Sci. Instrum., 69 (1998), 2550–2560 | DOI
[3] S.G. Gevorgyan, T. Kiss et al., “New Paramagnetic Peculiarity of the Superconductive Transition Detected by a Highly Sensitive OFC magnetometer ”, Supercond. Sci. Technol., 14 (2001), 1009–1013 | DOI
[4] S.G. Gevorgyan, T. Kiss et al., “Calibration of the Open-Flat Coilbased Tunnel Diode Oscillator Technique (OFC magnetometer) for Quantitative Extraction of Physical Characteristics of Superconductive State”, Physica C: Supercond. $\$ Appl., 366 (2001), 6–12 | DOI
[5] S.G. Gevorgyan, T. Kiss et al., “The Possibility of Detection of Small Absorption in HTS Thin Films by Means of the Highly Sensitive OFC Magnetometer”, Physica C: Supercond. $\$ Appl., 363 (2001), 113–118 | DOI
[6] L.D. Landau, E.M. Lifshiz, Field Theory, Nauka, M., 1988, 142 pp. (in Russian) | Zbl
[7] S.G. Gevorgyan, M.G. Azaryan, “Vibro-sensitive Nano-scale Seismic Detector Based on the Tunnel Diode Oscillator with a Single-layer Flat Coil”, Proc. of the 5-th International Conference on Semiconductor Micro- $\$ Nanoelectronics (Aghveran, Armenia, 2005), 82–86
[8] S.G. Gevorgyan, S.T. Muradyan, B.K. Kurghinyan, M.I. Qerobyan, “Needle-like properties of the probing RF field of “magnetic-field” probes based on the single-layer flat coils”, Proceedings of the YSU. Physical and Mathematical Sciences, 2011, no. 3, 47–51
[9] P. Fulde, R.A. Ferrell, “Superconductivity in a Strong Spin-Exchange Field”, Phys. Rev., 135:3A (1964), A550–A563 | DOI
[10] Sov. Phys. JETP, 20 (1965), 762 | MR
[11] H.A. Radovan, T.P. Murphy, E.C. Palm, S.W. Tozer, D. Hall, J.L. Sarrao, “Vortex Dynamics in Heavy Fermion CeCoIn$_5$”, Journal of Low Temperature Physics, 133:1 (2003), 377–386 | DOI
[12] S. Gevorgyan, H. Shirinyan et al., “Flat Coil-based Tunnel Diode Oscillator Enabling to Detect Real Shape of the Superconductive Transition Curve $\$ Capable of Imaging Properties of HTSC Films with High Spatial-resolution”, Nucl. Instr. $\$ Meth in Phy. Res. A, 520 (2004), 314–319 | DOI
[13] G.H. Karapetyan, H.G. Shirinyan, S.G. Gevorgyan, V.G. Gevorgyan, “Cryogenic Laser Scanning Microscope”, VII Conf. on Educational, Scientific $\$ Technol. Appl. in LabVIEW Environm. $\$ Technol. (November 28–29, 2008, Moscow, Russia), v. 1, 1.0.2, 8–12
[14] S.G. Gevorgyan, H.G. Shirinyan, G.H. Karapetyan, G.S. Gevorgyan, A.A. Polyanskii, “Imaging of the grain structure of thin HTS film by a single-layer flat-coil-oscillator test-method (SFCO-technique)”, Proceedings of the YSU. Physical and Mathematical Sciences, 2009, no. 2, 50–54