2013
DOI: 10.1103/physrevb.87.134517
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Resolving the effects of frequency-dependent damping and quantum phase diffusion in YBa2Cu3O7

Abstract: We report on the study of the phase dynamics of high critical temperature superconductor Josephson junctions. We realized YBa2Cu3O7−x (YBCO) grain boundary (GB) biepitaxial junctions in the submicron scale, using low loss substrates, and analyzed their dissipation by comparing the transport measurements with Monte Carlo simulations. The behavior of the junctions can be fitted using a model based on two quality factors, which results in a frequency dependent damping. Moreover, our devices can be designed to hav… Show more

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Cited by 30 publications
(30 citation statements)
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“…A comparative study of the phase dynamics of biepitaxial JJs on STO and LSAT substrates [25][26][27]51], confirms the effects of the stray capacitance of the STO substrate [58][59][60]. These experiments [25,51] use SCD measurements for a more sophisticated estimate of the effective C and have given a more quantitative account of the effects of nonequilibrium heating mechanisms in high-J c junctions [52]. The relation between C and J c might be more subtle and more questionable at high-J c values.…”
Section: Capacitance In High-j C Jjsmentioning
confidence: 87%
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“…A comparative study of the phase dynamics of biepitaxial JJs on STO and LSAT substrates [25][26][27]51], confirms the effects of the stray capacitance of the STO substrate [58][59][60]. These experiments [25,51] use SCD measurements for a more sophisticated estimate of the effective C and have given a more quantitative account of the effects of nonequilibrium heating mechanisms in high-J c junctions [52]. The relation between C and J c might be more subtle and more questionable at high-J c values.…”
Section: Capacitance In High-j C Jjsmentioning
confidence: 87%
“…HTS JJs are fundamental reference systems despite their complexity, because they span a wide range of junction parameters, as for instance J c , the specific resistance R n A, where A is the cross section, and because their characteristic energies can be also scaled over three orders of magnitude. Figure 1, panels (h) and (i), refer to YBCO biepitaxial GB junctions with J c of 65 and 5 A/cm 2 , respectively [25]. The I-V curves are highly hysteretic, with a difference between the critical and the retrapping current up to 70% at 300 mK.…”
Section: I-v Curves Of Unconventional Junctionsmentioning
confidence: 99%
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