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Titlebook: Nonequilibrium Superconductivity, Phonons, and Kapitza Boundaries; Kenneth E. Gray Book 1981 Plenum Press, New York 1981 Josephson junctio

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发表于 2025-3-21 18:26:55 | 显示全部楼层 |阅读模式
书目名称Nonequilibrium Superconductivity, Phonons, and Kapitza Boundaries
编辑Kenneth E. Gray
视频video
丛书名称NATO Science Series B:
图书封面Titlebook: Nonequilibrium Superconductivity, Phonons, and Kapitza Boundaries;  Kenneth E. Gray Book 1981 Plenum Press, New York 1981 Josephson junctio
描述The importance of phonons has long been recognized by research­ ers in nonequilibrium superconductivity. Similarly, experimentalists studying phonons at low temperatures have relied heavily on supercon­ ductors as sources and detectors. To a large extent this symbiotic relationship has developed with a general mutual awareness; however, to our knowledge these subjects have never been treated together in conferences or study institutes. It was with the hope of further contributing to the awareness and communication between workers in these areas that this NATO Advanced Study Institute (ASI) has been conceived. A second, but equally important, reason for holding this ASI is to fill a void by providing the first general textbook in this important area of physics. Therefore, there was an emphasis on the tutorial nature of the lectures and written contributions to this textbook. It should not go unnoticed that the experimental and theoretical concepts covered in this textbook are of paramount importance to the various applications of superconductors. Almost by definition, the use of a superconductor implies a nonequilibrium state! For example, phonon conduction to the helium bath is imp
出版日期Book 1981
关键词Josephson junction; Potential; Superconductor; experiment; optics; physics; semiconductor; superconductivit
版次1
doihttps://doi.org/10.1007/978-1-4684-3935-9
isbn_softcover978-1-4684-3937-3
isbn_ebook978-1-4684-3935-9Series ISSN 0258-1221
issn_series 0258-1221
copyrightPlenum Press, New York 1981
The information of publication is updating

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The Effect of Microwaves on Tunnel Junctions,oretical predictions and experimental observations relating to redistribution of quasiparticles and their relationship to the “gap enhancement” phenomenon. In the present paper we will describe the effect of microwaves on tunnel junctions excluding specifically “gap enhancement,” which will be described in Chapter 7 by J. E. Mooij.
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Kapitza Conductance of Solid-Liquid He Interfaces,es ≳0.05K. Although many of the characteristics of this non-classical channel have been measured the microscopic process still remains a mystery. The subject has been reviewed by Pollack (1969) Snyder (1970) Challis (1974, 1975) Anderson (1976) Kinder et al. (1979) and Wyatt (1979).
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Nonequilibrium Phonons,eration and detection in Section 2, experimental probing of nonequilibrium phonon emission in Section 3, applications to phonon absorption spectrocopy in Section 4, quantitative phonon intensity measurements in Section 5, applications to phonon emission spectroscopy in Section 6, and aspects of future work in Section 7.
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Normal-Superconducting Boundaries,. the thermal boundary resistance becomes less marked and at the same time a boundary contribution to the electrical resistance becomes apparent, as illustrated in Fig. 2 (Landau, 1970; Pippard et al., 1971).
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Heating and Dynamic Enhancement in Metallic Weak Links,hich slows down the gap response time from τ. to τ., which may be orders of magnitude longer, and also provides a type of dynamic enhancement of superconductivity in current-driven metallic weak links.
发表于 2025-3-23 08:55:21 | 显示全部楼层
Nonequilibrium Effects in 1-D Superconductors,s that is not quite cleared up obtains ordinary resistance.” Such a transition is inherently a nonequilibrium phenomenon, and given what we have learned from the preceding chapters it should be possible to see what aspects of this process have and have not yet been cleared up.
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