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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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,Phonon Engineering for Quantum Hybrid Systems,on engineering via wave properties of phonons and review recent advances in this field. In phononic crystals—acoustic analogs of photonic crystals—phonons that remain coherent upon scattering on periodic boundaries can experience wave interference. In turn, the interference changes phonon dispersion
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,On-Chip Wave Manipulations Enabled by Electromechanical Phononic-Crystal Waveguides, that enables the acoustic propagation and velocity to be modified. Combining this PnC technology with electromechanics provides a range of dynamic wave controls on a chip scale. In this chapter, we introduce an electromechanical PnC waveguide constructed from a GaAs-based membrane resonator array.
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,Quantum Effects in Carbon Nanotubes: Effects of Curvature, Finite-Length and Topological Property, studies. These effects play dominant roles in the quantum transport phenomena in the nanotube hybrid systems. The nanotube can be metallic or semiconducting depending on its chirality because of the discretization of wavevector in circumference direction. The curvature of nanotube surface induces t
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,Quantum Anomalous Hall Effect in Magnetic Topological Insulator,n an electric current flows in a ferromagnetic topological insulator, the Hall resistance orthogonal to both current and magnetization is quantized to the von Klitzing constant ., where . is the Planck’s constant and . is the elementary charge. The QAHE shares many phenomenological features with the
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Novel Phonon Generator and Photon Detector by Single Electron Transport in Quantum Dots,detector. First, we study the electron-LO-phonon interaction in double quantum dot in series. When the energy level spacing between the quantum dots matches the energy of LO phonons, single electron transport is accompanied by the emission of single LO phonon, analogously to cavity-QED for atoms in
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