RAS PhysicsФизика металлов и металловедение Physics of Metals and Metallography

  • ISSN (Print) 0015-3230
  • ISSN (Online) 3034-6215

RESONANCE QUANTUM EFFECTS IN THE MAGNETORESISTANCE OF NdCeCuO/SrTiO EPITAXIAL FILMS

PII
S30346215S0015323025070023-1
DOI
10.7868/S3034621525070023
Publication type
Article
Status
Published
Authors
Volume/ Edition
Volume 126 / Issue number 7
Pages
758-766
Abstract
Magnetotransport properties of electron-doped layered superconductor NdCeCuO (x = 0.145) with intrinsic Josephson junctions are studied in the resistive state and in the Josephson vortex flow mode. We associate the periodic steps of magnetoresistance, R(B), observed in the flux-flow mode with the resonant response of the system to the magnetic field-induced change in the number of Josephson vortices, each of which contains a quantum of magnetic flux.
Keywords
слоистый сверхпроводник внутренние джозефсоновские переходы резистивное состояние режим потока джозефсоновских вихрей
Date of publication
23.07.2025
Year of publication
2025
Number of purchasers
0
Views
53

References

  1. 1. Josephson B.D. Possible new effects in superconductive tunneling // Phys. Lett. 1962. V. 1. P. 251.
  2. 2. Barone A., Paterno G. Physics and Applications of the Josephson Effect. New York: Wiley, 1982. 525 p.
  3. 3. Schmidt V.V. The Physics of Superconductors: Introduction to Fundamentals and Applications. Eds. P. Muller, A. V. Ustinov (Springer-Verlag, Berlin-Heidelberg, 1997. 205 p.).
  4. 4. Tinkham M. Introduction to superconductivity. Dover, Mineola. N.Y., 2004. 445 p.
  5. 5. Poole C.P.Jr., Prozorov R., Farach H.A., Creswick R.J. Superconductivity, 3rd ed., Elsevier, 2014. 633 p.
  6. 6. Giaever I. Detection of the ac Josephson effect // Phys. Rev. Letters. 1965. V. 14. P. 904.
  7. 7. Shapiro S. Josephson Currents in Superconducting Tunneling: The Effect of Microwaves and Other Observations // Phys. Rev. Letters. 1963. V. 11. P. 80.
  8. 8. Rowell J.M. Magnetic field dependence of the Josephson tunnel current // Phys. Rev. Letters. 1963. V. 11. P. 200.
  9. 9. Anderson P.W. The Josephson effect and quantum coherence measurements in superconductors and superfluids // Progress Low Temp. Phys. 1967. V. 5. P. 1.
  10. 10. Coon D.D. and Fiske. Josephson ac and step structure in the supercurrent tunneling characteristic // Phys. Rev. 1965. V. 138. P. A744.
  11. 11. Kulik O. Theory of “steps” of voltage-current characteristic of the Josephson tunnel current // Pis’ma Zh. Eksp. Teor. Fiz. 1965. V. 2. P. 134. [JETP Letters. 1965. V. 2. P. 84].
  12. 12. Mazo J.J. and Ustinov A.V. The sine-Gordon Equation in Josephson-Junction Arrays in the sine-Gordon Model and its Applications, Nonlinear Systems and Complexity 10, J. Cuevas-Maraver et al. (eds.), Springer International Publishing, Switzerland, 2014. P. 175.
  13. 13. Owen C.S. and Scalapino D.J. Vortex structure and critical currents in Josephson junctions // Phys. Rev. 1967. V. 164. P. 538.
  14. 14. Yurgens A.A. Intrinsic Josephson junctions: recent developments // Supercond. Sci. Technol. 2000. V. 13. P. R85.
  15. 15. Heim S., Nachruh T., Möjße M., Kleiner R., Koch R., Rother S., Waldmann O., Müller P., Kimura T., Tokura Y. Intrinsic tunneling in cuprates and manganites // Phys. C: Supercond. 2002. V. 367. P. 348.
  16. 16. Ooi S., Moehiku T., and Hirata K. Periodic Oscillations of Josephson-Vortex Flow Resistance in BiSrCaCuO // Phys. Rev. Letters. 2002. V. 89. P. 247002.
  17. 17. Latyshev Yu.I., Pavlenko V.N., Orlov A.P., Hu X. Josephson vortex lattice melting in Bi-2212 probed by commensurate oscillations of Josephson flux-flow // JETP letters. 2005. V. 82. P. 232.
  18. 18. Kakeya I., Iwase M., Yamamoto T. and Kadowaki K. Josephson lattice structure in mesoscopic intrinsic Josephson junctions by means of flux-flow resistance in BiSrCaCuO// cond-mat 0503498.
  19. 19. Kadowaki K., Kakeya I., Yamamoto T., Yamazaki T., Kohri M., Kubo Y. Dynamical properties of Josephson vortices in mesoscopic intrinsic Josephson junctions in single crystalline BiSrCaCuO// Physica C. 2006. V. 437–438. P. 111.
  20. 20. Moll Philip J.W., Zhu Xiyu, Cheng Peng, Wen Hai-Hu, Batlogg Bertram. Intrinsic Josephson junctions in the iron-based multi-band superconductor (VSrO) FeAs// Nature Phys. 2014. V. 10. P. 644.
  21. 21. Koshelev A.E. Edge critical currents of dense Josephson vortex lattice in layered superconductors // Phys. Rev. B. 2002. V. 66. P. 224514.
  22. 22. Koshelev A. Magnetic oscillations of critical current in intrinsic Josephson-junction stacks. Phys. Rev. B. 2007. V. 75. P. 214513.
  23. 23. Machida M. Dynamical Matching of Josephson Vortex Lattice with Sample Edge in Layered High-Tc Superconductors: Origin of the Periodic Oscillation of Flux Flow Resistance // Phys. Rev. Letters. 2003. V. 90. P. 037001.
  24. 24. Ustinov A.V., Pedersen N.F. Origin of flux-flow resistance oscillations in BiSrCaCuO: Possibility of Fiske steps in a single junction // Phys. Rev. B. 2005. V. 72. P. 052502.
  25. 25. Абрикосов А.А. О магнитных свойствах сверхпроводников второго рода // ЖЭТФ. 1957. Т. 32. С. 1442.
  26. 26. Huebener R.P. Magnetic Flux Structures in Superconductors: Extended Reprint of a Classic Text (Springer Series in Solid-State Sciences Book 6). 2001. 284 p.
  27. 27. Lawrence W.E. and Doniach S. Theory of layer-structure superconductors // In Proceedings of the Twelfth International Conference on Low Temperature Physics, Kyoto, Japan, edited by E. Kanda (Keigaku, Tokyo). 1971. P. 361.
  28. 28. Blatter G., Feigel'man M.Y., Geshkenbein Y.B., Larkin A.I., Vinokur V.M. Vortices in high-temperature superconductors // Rev. Mod. Phys. 1994. V. 66. P. 1275.
  29. 29. Bulaeyskii L.N. Magnetic properties of layered superconductors with weak interaction between the layer // Zh. Eksp. Teor. Fiz. 1973. V. 64. P. 2241.
  30. 30. Clem J.R. and Coffey M.W. Viscous flux motion in a Josephson-coupled layer model of high-Tc superconductors // Phys. Rev. B. V. 42. P. 6209.
  31. 31. Koshelev A.E., Dodgson M.J.W. Josephson vortex lattice in layered superconductors // Zh. Eksp. Teor. Fiz. Vol. 2013. V. 144 (9). P. 519. [JETP. 2013. V. 117. P. 450.].
  32. 32. Clem J.R., Coffey M.W. and Hao Z. Lower critical field of a Josephson-coupled layer model of high-T superconductors // Phys. Rev. B. 1991. V. 44. P. 273.
  33. 33. Ivanov A.A., Galkin S.G., Kuznetsov A.V., Menushenkov A.P. Smooth homogeneous HTSC thin films produced by laser deposition with flux separation // Phys. C: Supercond. 1991. V. 180. P. 69.
  34. 34. Charikova T.B., Deyyaterikov D.I., Neverov V.N., Popov M.R., Shelushinina N.G., Ivanov A.A. Intrinsic Josephson junction characteristics of NdCeCuO/SrTiO epitaxial films // Solid State Comm. 2024. V. 394. P. 115723.
  35. 35. McCumber D.E. Effect of ac Impedance on dc Voltage-Current Characteristics of Superconductor Weak Link Junctions // J. Appl. Phys. 1968. V. 39. P. 3113.
  36. 36. Stewart W.C. Current-voltage characteristics of josephson junctions // Appl. Phys. Lett. 1968. V. 12. P. 277.
  37. 37. Plakida N. High-Temperature Cuprate Superconductors: Experiment, Theory, and Applications. Springer Science & Business Media, 2010. 570 p.
  38. 38. Kokales J.D., Fournier P., Mercaldo L.V., Talanov V.V., Greene R.L., Anlage S.M. Microwave Electrodynamics of Electron-Doped Cuprate Superconductors // Phys. Rev. Letters. 2000. V. 85. P. 3696.
  39. 39. Prozorov R., Giannetta R.W., Fournier P., Greene R.L. Evidence for nodal quasiparticles in electron-doped cuprates from penetration depth measurements // Phys. Rev. Letters. 2000. V. 85. P. 3700.
  40. 40. Prozorov R., Giannetta R.W., Carrington A., Fournier P., Greene R.L., Guptasarma P., Hinks D.G., and Banks A.R. Measurements of the absolute value of the penetration depth in high-Tc superconductors using a tunnel diode resonator // cond-mat 0007013.
  41. 41. Schwidtal K. Type I and type II superconductivity in wide Josephson junctions // Phys. Rev. 1970. V. B2. P. 2526.
  42. 42. Charikova T.B., Shelushinina N.G., Popov M.R. Pairing Type Symmetry in Cuprate Superconductors // Phys. Met. Metal. (english only). 2024. V. 125. P. 21.
QR
Translate

Индексирование

Scopus

Scopus

Scopus

Crossref

Scopus

Higher Attestation Commission

At the Ministry of Education and Science of the Russian Federation

Scopus

Scientific Electronic Library