activity
20172021
most citedAnisotropic temperature dependence of normal state resistivity in underdoped region of a layered electron-doped superconductor Nd2-xCexCuO4

10 citations · 12 across the 3 of their papers we have counts for

collaborators

5 papers

cond-mat.supr-con2021

Vortex motion in tilted magnetic fields in highly layered electron-doped superconductor Nd2-xCexCuO4

O. E. Petukhova, A. S. Klepikova, M. R Popov +3

The carrier transport and the motion of a vortex system in a mixed state of an electron-doped high-temperature superconductors Nd2-xCexCuO4 were investigated. To study the anisotro…

cond-mat.supr-con20202 cited

Lateral vortex motion in highly layered electron-doped superconductor Nd2-xCexCuO4

O. E. Petukhova, M. R. Popov, A. S. Klepikova +3

The carrier transport and the motion of a vortex system in the electron-doped high-temperature superconductors Nd2-xCexCuO4 in underdoped and optimally doped (x = 0135, 0.145, 0.15…

cond-mat.supr-con201810 cited

Anisotropic temperature dependence of normal state resistivity in underdoped region of a layered electron-doped superconductor Nd2-xCexCuO4

A. S. Klepikova, T . B. Charikova, N. G. Shelushinina +2

The aim of this work is to investigate the temperature dependencies both in CuO2-plane and out-of plane resistivities in electron-doped Nd2-xCexCuO4 for x from 0.135 up to 0.15 in…

cond-mat.mes-hall2018

Unconventional Reentrant Quantum Hall Effect in a HgTe/CdHgTe Double Quantum Well

M. V. Yakunin, S. S. Krishtopenko, S. M. Podgornykh +7

We report on observation of an unconventional structure of the quantum Hall effect (QHE) in a -type HgTe/CdHgTe double quantum well (DQW) consisting of two HgTe lay…

cond-mat.mes-hall2017

Large-scale impurity potential in the quantum Hall effect for the HgTe quantum well with inverted band structure

S. V. Gudina, Yu. G. Arapov, V. N. Neverov +8

We report on the longitudinal and Hall resistivities of a HgTe quantum well with inverted energy spectrum (dQW = 20.3 nm) measured in the quantum Hall (QH) regime at magnetic field…