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The purpose of our research is to study the nuclear spin lattice relaxation rate of impure d-wave superconductors. We use the Green function method to derive the approximation equation of density of states including the impurity scattering…

Superconductivity · Physics 2015-05-13 P. Udomsamuthirun , K. Meemon

The effects of magnetic vortices and nonmagnetic impurities on the low energy quasiparticle excitations and the spin-lattice relaxation rate are examined in the iron-based superconductors for the $s_{\pm}$-, $s$- and d-wave pairing…

Superconductivity · Physics 2011-08-12 Hong-Min Jiang , Jia Guo , Jian-Xin Li

Noncentrosymmetric superconductors can lead to a variety of exotic properties in the superconducting state such as line nodes, multigap behavior, and time-reversal symmetry breaking. In this paper, we report the properties of the new…

Superconductivity · Physics 2020-01-08 D. Singh , Sajilesh K. P , Sourav Marik , P. K. Biswas , A. D. Hillier , R. P. Singh

Recent experiments on the spin-spin relaxation time in high-Tc cuprate superconductors are discussed on the basis of the BCS-RPA theory.

Superconductivity · Physics 2009-10-31 O. Narikiyo

By applying a microscopic gauge-invariant kinetic theory in $d$-wave superconductors, we analytically derive the energy spectra of the breathing Higgs mode and, in particular, rotating Higgs mode that is unique for the $d$-wave order…

Superconductivity · Physics 2020-07-27 F. Yang , M. W. Wu

The hyperfine coupling between the spin of a charge carrier and the nuclear spin bath is a predominant channel for the carrier spin relaxation in many organic semiconductors. We theoretically investigate the hyperfine-induced spin…

Mesoscale and Nanoscale Physics · Physics 2015-09-30 V. V. Mkhitaryan , V. V. Dobrovitski

Terahertz nonlinear optics is a viable method to interrogate collective phenomena in quantum materials spanning ferroelectrics, charge-density waves, and superconductivity. In superconductors this includes the Higgs amplitude and Josephson…

Superconductivity · Physics 2024-03-19 Kelson Kaj , Kevin A. Cremin , Ian Hammock , Jacob Schalch , Dmitri N. Basov , Richard D. Averitt

The spin-lattice relaxation rate $1/T_1$ and the spin echo decay rate $1/T_{2G}$ for the spin-$1\over 2$ antiferromagnetic Heisenberg chain are calculated using quantum Monte Carlo and maximum entropy analytic continuation. The results are…

Condensed Matter · Physics 2009-10-28 Anders W. Sandvik

We investigate the electron and hole spin relaxation in an ensemble of self-assembled InAs/In$_{0.53}$Al$_{0.24}$Ga$_{0.23}$As/InP quantum dots with emission wavelengths around $1.5$~$\mu$m by pump-probe Faraday rotation spectroscopy.…

Mesoscale and Nanoscale Physics · Physics 2019-01-01 A. V. Mikhailov , V. V. Belykh , D. R. Yakovlev , P. S. Grigoryev , J. P. Reithmaier , M. Benyoucef , M. Bayer

We assess when electron trapping nonlinearity is expected to be important in Langmuir waves. The basic criterion is that the inverse of the detrapping rate nu_d of electrons in the trapping region of velocity space must exceed the bounce…

Plasma Physics · Physics 2013-01-01 D. J. Strozzi , E. A. Williams , H. A. Rose , D. E. Hinkel , A. B. Langdon , J. W. Banks

We discuss how reactive and dissipative non-linearities affect the intrinsic response of superconducting thin-film resonators. We explain how most, if not all, of the complex phenomena commonly seen can be described by a model in which the…

Mesoscale and Nanoscale Physics · Physics 2020-08-26 Christopher N Thomas , Stafford Withington , Zhenyuan Sun , Tess Skyrme , David J. Goldie

We conducted $^{77}$Se-nuclear magnetic resonance studies of the iron-based superconductor FeSe in magnetic fields of 0.6 to 19 T to investigate the superconducting and normal-state properties. The nuclear spin-lattice relaxation rate…

We study the preparation (pump) and the detection (probe) of far-from-equilibrium BCS superconductor dynamics in THz pump-probe experiments. In a recent experiment [R. Matsunaga, Y. I. Hamada, K. Makise, Y. Uzawa, H. Terai, Z. Wang, and R.…

Superconductivity · Physics 2017-03-10 Yang-Zhi Chou , Yunxiang Liao , Matthew S. Foster

The semiclassical path integral method has been applied for studying spin relaxation in a narrow 2D strip with the Rashba spin-orbit interaction. Our numerical calculations show a good agreement with the experimental data, although some…

Mesoscale and Nanoscale Physics · Physics 2009-11-13 Cheng-Hung Chang , Jengjan Tsai , Hui-Fen Lo , A. G. Mal'shukov

We show that in low dimensional disordered conductors, the quasiparticle decay and the relaxation of the phase are not exponential processes. In the quasi-one dimensional case, both behave at small time as $e^{- (t/\tau_{in})^{3/2}}$ where…

Mesoscale and Nanoscale Physics · Physics 2009-11-10 Gilles Montambaux , Eric Akkermans

We study the spin dynamics in underdoped cuprates at low temperatures by considering them as quasi two dimensional d-wave superconductors (dSC) with strong phase fluctuations. An effective theory of spin degrees of freedom of nodal…

Superconductivity · Physics 2007-05-23 Igor F. Herbut , Dominic J. Lee

Nuclear relaxation is an important thermodynamic probe of electronic excitations, in particular in conducting and superconducting systems. Here, an empirical phenomenology based on all available literature data for planar Cu in hole-doped…

As low-loss non-linear elements, Josephson junctions are the building blocks of superconducting qubits. The interaction of the qubit degree of freedom with the quasiparticles tunneling through the junction represent an intrinsic relaxation…

Mesoscale and Nanoscale Physics · Physics 2011-08-25 G. Catelani , R. J. Schoelkopf , M. H. Devoret , L. I. Glazman

Momentum relaxation can be built into many holographic models without sacrificing homogeneity of the bulk solution. In this paper we study two such models: one in which translational invariance is broken in the dual theory by…

High Energy Physics - Theory · Physics 2015-04-24 Tomas Andrade , Simon A. Gentle

The fidelity of operations on a solid-state quantum processor is fundamentally bounded by environmental decoherence. Characterizing environmental fluctuations is challenging because the acquisition time of nonadaptive experimental protocols…