论文标题

n超导腔的Casimir Energy:YBCO的模型(BSCCO)

Casimir energy for N superconducting cavities: a model for the YBCO (BSCCO)

论文作者

Allocca, A., Avino, S., Balestrieri, S., Calloni, E., Caprara, S., Carpinelli, M., D'Onofrio, L., D'Urso, D., De Rosa, R., Errico, L., Gagliardi, G., Grilli, M., Mangano, V., Marsella, M., Naticchioni, L., Pasqualetti, A., Pepe, G. P., Perciballi, M., Pesenti, L., Puppo, P., Rapagnani, P., Ricci, F., Rosa, L., Rovelli, C., Rozza, D., Ruggi, P., Saini, N. L., Sequino, V., Sipala, V., Stornaiuolo, D., Tafuri, F., Tagliacozzo, A., Melo, I. Tosta E, Trozzo, L.

论文摘要

在本文中,我们研究了由n个空腔制成的样品的Casimir能量,其中N >> 1,从金属的过渡到构成板的超导阶段。在表征了构型的构型的能量之后,构成腔的层是通过电介质制成的,以及通过等离子体表制造层的构型,我们将分析集中在后者上。它代表了朝着整个过渡过程中YBCO(或BSCCO)样本的Casimir能量的行为完全理解“多腔”(具有n个大的)宏观表征的最后一步。我们的分析对于Archimedes实验特别有用,旨在测量电磁真空能与重力场的相互作用。为此,我们旨在通过诱导从金属到超导阶段的过渡来调节分层结构的Casimir能量。在表征了金属和超导阶段的这种结构的Casimir能量之后,我们对整个过渡的能量调节进行了估计。

In this paper we study the Casimir energy of a sample made by N cavities, with N >> 1, across the transition from the metallic to the superconducting phase of the constituting plates. After having characterized the energy for the configuration in which the layers constituting the cavities are made by dielectric and for the configuration in which the layers are made by plasma sheets, we concentrate our analysis on the latter. It represents the final step towards the macroscopic characterization of a "multi cavity" (with N large) necessary to fully understand the behaviour of the Casimir energy of a YBCO (or a BSCCO) sample across the transition. Our analysis is especially useful to the Archimedes experiment, aimed at measuring the interaction of the electromagnetic vacuum energy with a gravitational field. To this purpose, we aim at modulating the Casimir energy of a layered structure, the multi cavity, by inducing a transition from the metallic to the superconducting phase. After having characterized the Casimir energy of such a structure for both the metallic and the superconducting phase, we give an estimate of the modulation of the energy across the transition.

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