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Optomechanics with Quantum Vacuum Fluctuations

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Fachbuch

Buch. Softcover

2024

128 S. 2 s/w-Abbildungen, 62 Farbabbildungen, Bibliographien.

In englischer Sprache

Springer Nature Switzerland. ISBN 978-3-031-43054-1

Format (B x L): 15.5 x 23.5 cm

Gewicht: 207 g

Das Werk ist Teil der Reihe: Springer Theses

Produktbeschreibung

This thesis presents the first realization of non-reciprocal energy transfer between two cantilevers by quantum vacuum fluctuations. According to quantum mechanics, vacuum is not empty but full of fluctuations due to zero-point energy. Such quantum vacuum fluctuations can lead to an attractive force between two neutral plates in vacuum – the so-called Casimir effect – which has attracted great attention as macroscopic evidence of quantum electromagnetic fluctuations, and can dominate the interaction between neutral surfaces at small separations. The first experimental demonstration of diode-like energy transport in vacuum reported in this thesis is a breakthrough in Casimir-based devices. It represents an efficient and robust way of regulating phonon transport along one preferable direction in vacuum. In addition, the three-body Casimir effects investigated in this thesis were used to realize a transistor-like three-terminal device with quantum vacuum fluctuations. These twobreakthroughs pave the way for exploring and developing advanced Casimir-based devices with potential applications in quantum information science. This thesis also includes a study of the non-contact Casimir friction, which will enrich the understanding of quantum vacuum fluctuations.

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