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Titlebook: Quantum Hybrid Electronics and Materials; Yoshiro Hirayama,Kazuhiko Hirakawa,Hiroshi Yamaguc Book 2022 Springer Nature Singapore Pte Ltd.

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Book 2022three-dimensional photonic crystals, and bio-inspired magnonic systems. Each topic, as a component in the framework of hybrid quantum systems, is concisely presented by experts at the forefront of the field. Accordingly, the book offers a valuable asset, and will help readers find advanced technologies and materials suitable for their purposes..
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,Quantum Anomalous Hall Effect in Magnetic Topological Insulator,his chapter, we review the basic concept and emerging properties of the QAHE. In particular, we discuss the transport properties in the engineered magnetic heterostructure films of topological insulators which have provided a unique platform to study emergent topological phenomena.
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,Phonon Engineering for Quantum Hybrid Systems,ent control of thermal conductance only either at low temperatures or in superlattices with the periodicity and roughness at atomic scale. Thus, we discuss the advantages and limitations of coherent control of heat conduction, as well as possible strategies to overcome these limits in the future.
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Hyperfine-Mediated Transport in a One-Dimensional Channel,tance developed below the last integer plateau. For a more applied-oriented, the developed NMR can be turned to probe an ultra-low level strain modulation in the channel owing to differential thermal contraction between metal gates and a semiconductor via nuclear quadrupole interaction.
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Suspended Carbon Nanotubes for Quantum Hybrid Electronics,nd sensitivity to the surrounding environment with the outer surface and the inner space. In this chapter, we will focus on the synthesis and investigation of phononic properties of suspend SWCNTs for the applications of SWCNTs for future quantum hybrid electronics.
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Diversity of Hybrid Quantum Systems,logies (QETs), such as a highly-sensitive metrology based on quantum coupling. A variety of QETs require the hybridization of charges, spins, nuclear spins, photons, and/or phonons. Such hybridization also provides a way to make a quantum coupling across various scales of energy and distance. We nee
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