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Measurements of Thermal Conductivity and Kapitza Conductance of Niobium for SRF Cavities for Various Treatments

机译:不同处理条件下SRF腔中铌的导热系数和Kapitza导热系数的测量

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Niobium is the material of choice for making the superconducting radio frequency cavities used in present-day accelerators for the acceleration of charged particles. In order to achieve high accelerating gradients for future accelerators such as the Linear Collider, thermal limitations in Nb cavities play an important role. The effects of plastic deformations due to applied strains on thermal conductivity of Nb in phonon transmission regime as well as on its kapitza conductance have been studied. The study reveals absence of the phonon peak due to applied strains beyond the elastic limits of the Nb metal as well as reduced Kapitza conductance. This resulted in almost 80% reduction in thermal conductivity of the niobium at 2 K. Low temperature annealing did not recover the phonon peak as was seen before the application of plastic deformations.
机译:铌是制造当今加速器中用于加速带电粒子加速的超导射频腔的首选材料。为了实现未来的加速器(如线性对撞机)的高加速梯度,Nb腔中的热限制起着重要作用。研究了施加应变引起的塑性变形对Nb在声子传输方式中的导热性及其Kapitza电导率的影响。这项研究表明,由于施加的应变超过了Nb金属的弹性极限,并且由于Kapitza电导降低,声子峰不存在。这导致铌在2 K时的热导率降低了近80%。低温退火无法恢复声子峰,这是在施加塑性变形之前看到的。

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