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Related papers: London Penetration Depth and Pair Breaking

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The low temperature variation of the London penetration depth for a number of iron-pnictide and iron-chalcogenide superconductors is nearly quadratic, $\Delta \lambda(T) = \beta T^n$ with $n\approx 2$. The coefficient in this dependence…

Superconductivity · Physics 2010-06-11 R. T. Gordon , H. Kim , M. A. Tanatar , R. Prozorov , V. G. Kogan

A simple relation is established between the zero-$T$ penetration depth $\lambda (0)$ and the slope of $\lambda^{-2}(T)$ near $T_c$, similar to Helfand-Werthamer's relation for $H_{c2}(0)$ and the slope of $H_{c2}(T)$ at $T_c$ for the…

Superconductivity · Physics 2020-03-25 V. G. Kogan , M. A. Tanatar , R. Prozorov

Temperature dependence of the London penetration depth $\lambda$ measured in single crystals of CeCoIn$_5$ is interpreted as caused by a strong pair-breaking scattering that makes the superconductivity in this compound gapless. For a…

Superconductivity · Physics 2007-12-12 V. G. Kogan , R. Prozorov , C. Petrovic

London penetration depth, $\lambda (T)$, was measured in single crystals of K$_{1-x}$Na$_x$Fe$_2$As$_2$, $x$=0 and 0.07, down to temperatures of 50~mK, $\sim T_c/50$. Isovalent substitution of Na for K significantly increases impurity…

Following the work of Abrikosov and Gor'kov on the pair-breaking effects, one can derive the temperature dependencies of the electronic specific heat $C_s/T=\gamma^\prime+\mu T^2$ (with the jump at the superconducting transition $\Delta C…

Superconductivity · Physics 2010-02-19 V. G. Kogan

Cho et al. [Phys. Rev. B, 84, 174502 (2011)] have reported on the temperature dependence of the London penetration depth deduced from Tunnel Diode Oscillator (TDO) measurements in optimally doped Fe(Se,Te) single crystals. According to…

Superconductivity · Physics 2015-06-05 T. Klein , P. Rodiere , C. Marcenat

We report measurements of the in-plane London penetration depth $\lambda$ in single crystals of the $\alpha$-PdBi$_{2}$ superconductor --- the $\alpha$-phase counterpart of the putative topological superconductor $\beta$-PdBi$_{2}$, down to…

Superconductivity · Physics 2017-05-24 S. Mitra , K. Okawa , S. Kunniniyil Sudheesh , T. Sasagawa , Jian-Xin Zhu , Elbert E. M. Chia

It is shown that the notion of the finite pairing interaction energy range $T_d$ results in a linear temperature dependence of the London magnetic penetration depth $\Delta \lambda / \lambda (0) = (T/T_d)(2/\pi)\ln 2$ at low temperature, in…

Superconductivity · Physics 2008-02-03 Sang Boo Nam

Temperature-dependent London penetration depth, $\lambda(T)$, of a high quality optimally-doped $\text{YBa}_{2}\text{Cu}_{3}\text{O}_{7-\delta}$ single crystal was measured using tunnel-diode resonator. Controlled artificial disorder was…

Superconductivity · Physics 2022-04-18 Kyuil Cho , M. Konczykowski , S. Teknowijoyo , S. Ghimire , M. A. Tanatar , Vivek Mishra , R. Prozorov

The in-plane London penetration depth, $\lambda(T)$, was measured in single crystals of the iron-chalcogenide superconductors Fe$_{1.03}$(Te$_{0.63}$Se$_{0.37}$) and Fe$_{1.06}$(Te$_{0.88}$S$_{0.14}$) by using a radio-frequency tunnel diode…

A two-band model with repulsive interband coupling and interband {\it transport} (potential) scattering is considered to elucidate their effects on material properties. In agreement with previous work, we find that the bands order…

Superconductivity · Physics 2016-06-22 V. G. Kogan , R. Prozorov

Irradiation with Pb ions was used to study the effect of disorder on the in-plane London penetration depth, $\lambda(T)$, in single crystals of Ba(Fe$_{1-x}$T$_x$)$_2$As$_2$ (T=Co, Ni). An increase of the irradiation dose results in a…

We report tunnel diode resonator measurements of in-plane London penetration depth, $\lambda(T)$, in optimally-doped single crystals of Fe(Te$_{0.58}$Se$_{0.42}$) with $T_c\sim$ 14.8 K. Systematic measurements were carried out for six…

Superconductivity · Physics 2011-12-01 K. Cho , H. Kim , M. A. Tanatar , J. Hu , B. Qian , Z. Q. Mao , R. Prozorov

We present a simple derivation of an expression for the superfluid density $ n_s \propto 1/\lambda^2 $ in superconductors with the tight binding energy dispersion. The derived expression is discussed in detail because of its distinction…

Superconductivity · Physics 2015-05-19 M. V. Eremin , I. A. Larionov , I. E. Lyubin

The London penetration depth, $\lambda(T)$, has been measured in several single crystals of Ba(Fe$_{0.93}$Co$_{0.07}$)$_2$As$_2$. Thermodynamic, electromagnetic, and structural characterization measurements confirm that these crystals are…

The apparent $T^2$-temperature dependence of the London penetration depth in Sr$_2$RuO$_4$ is discussed on the basis of a multi-gap model with horizontal line nodes. The influence of the nodes in combination with nonlocal electromagnetic…

Superconductivity · Physics 2009-11-07 Hiroaki Kusunose , Manfred Sigrist

We proceed to a systematic exploration of the low temperature dependence of the London penetration depth of isotropic superconductors within strong coupling theory in the clean limit. For a sizeable range of parameters, we find that strong…

Condensed Matter · Physics 2009-10-28 X. Leyronas , R. Combescot

The London penetration depth $\lambda$ is the basic length scale for electromagnetic behavior in a superconductor. Precise measurements of $\lambda$ as a function of temperature, field, and impurity scattering have been instrumental in…

Superconductivity · Physics 2022-01-10 Russell Giannetta , Antony Carrington , Ruslan Prozorov

The temperature dependence of the in-plane, \lambda_{\parallel}, and interplane, \lambda_{\perp}, London penetration depth was measured in the metal-free all-organic superconductor \beta-ET (see title) ($T_c \approx$ 5.2 K).…

Superconductivity · Physics 2009-10-31 R. Prozorov , R. W. Giannetta , J. Schlueter , A. M. Kini , J. Mohtasham , R. W. Winter , G. L. Gard

The breakdown magnetic field is the key parameter which determines the performance of superconducting radio-frequency cavities. This is the maximum field up to which the Meissner state remains stable and in uniform material, it is…

Superconductivity · Physics 2019-01-18 A. E. Koshelev
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