Chapter 1: Diversity of hybrid quantum systems
Authored by Yoshiro Hirayama (Tohoku University)
Chapter 2: Phonon engineering for quantum hybrid systems
Authored by Masahiro Nomura and Roman Anufriev (The University of Tokyo)
Chapter 3: Phonon engineering of graphene by structural modification
Authord by Takayuki Arie (Osaka Prefecture University)
Chapter 4: On-chip wave manipulation enabled by an electromechanical phononic crystal waveguide
Authored by Daiki Hatanaka, Megumi Kurosu, and Hiroshi Yamaguchi (NTT Basic Research Labs.)
Chapter 5: Electron and Phonon Transport Simulation for Quantum Hybrid Electronics
Authored by Nobuya Mori (Osaka University)
Chapter 6: Strain science and engineering in graphene
Authored by Akinobu Kanda and Hikari Tomori (Tsukuba University)
Chapter 7: Carbon nanotubes for hybrid quantum system: Material and properties
Authored by Yutaka Ohno (Nagoya University)
Chapter 8: Suspended carbon nanotubes for quantum hybrid electronics
Authored by Yoshikazu Homma, Takumi Inaba and Shohei Chiashi (Tokyo University of Science)
Chapter 9: Quantum effects in carbon nanotubes: Effects of curvature, finite-length and topological properties
Authored by Wataru Izumida (Tohoku University)
Chapter 10: Synthesis of nanocarbon materials from solid templates for quantum hybrid electronics
Authored by Ryota Negishi and Yoshihiro Kobayashi (Osaka University)
Chapter 11: Quantum anomalous Hall effect in magnetic topological insulator
Authored by Minoru Kawamura (RIKEN)
Chapter 12: Terahertz electronic and vibronic dynamics at the single molecule level
Authored by Kazuhiko Hirakawa (The University of Tokyo)
Chapter 13: Novel phonon generator and photon detector by single electron transport in quantum dots
Authored by Mikio Eto (Keio University)
Chapter 14: Hyperfine-mediated quantum transport in a one dimensional channel
Authored by Mohammad H. Fauzi and Yoshiro Hirayama (Tohoku University)
Chapter 15: Microscopic observation of quantum Hall systems involving edge, bulk localized, and hyperfine-coupled states
Authored by Katsushi Hashimoto, Toru Tomimatsu, and Yoshiro Hirayama (Tohoku University)
Chapter 16: Semiconductor chiral photonic crystal for controlling circularly polarized vacuum field
Authored by Satoshi Iwamoto, Shun Takahashi, Yasuhiko Arakawa (The University of Tokyo)
Chapter 17: Hybrid structure of semiconductor quantum well superlattice and quantum dot
Authored by Kouichi Akahane (NICT)
Chapter 18: Magnonics coupled with spin fluctuation inspired by the bio systems
Authored by Hitoshi TABATA (The University of Tokyo)
Yoshiro Hirayama is a Professor at the Center for Science and Innovation in Spintronics (CSIS), Tohoku University, Japan. He received his Ph.D. in Engineering from the University of Tokyo in 1983. He joined NTT Basic Research Laboratories the same year, and served as the Group Leader, Distinguished Technical Member and Executive Manager. He was a professor at the Graduate School of Science, Tohoku University, from 2006 to 2021. In the course of his work, he has led numerous research projects on semiconductor quantum transport, carrier interaction, and quantum coherent systems, e.g. "Nuclear Spin Electronics" funded by ERATO-JST (2007-2015), and the Grant-in-Aid for Scientific Research on Innovative Area "Science of Hybrid Quantum Systems (2015-2020). He is also a Fellow of the Institute of Physics (London) and the Japan Society of Applied Physics.
Kazuhiko Hirakawa is a Professor at the Institute of Industrial Science, the University of Tokyo. His research interests include electron transport and terahertz photodynamics of semiconductor heterostructures and quantum nanostructures. He received his Ph.D. in Electronic Engineering from the University of Tokyo in 1987. He was a visiting researcher at Princeton University in 1991-1993 and a visiting professor at Le Laboratoire Pierre Aigrain, École Normale Supérieure in 2006. He subsequently led a JST CREST project on the physics and applications of extremely small quantum nanotransistors. Currently he is also Director of the University of Tokyo's Institute for Quantum Nano Information Electronics and a Fellow of the Japan Society of Applied Physics.
Hiroshi Yamaguchi is an executive manager for quantum and nano device research at NTT Basic Research Laboratories. His work chiefly focuses on compound semiconductor surfaces, scanning tunneling microscopy, and micro/nanomechanical devices using semiconductor heterostructures. He received his Ph.D. in Engineering from Osaka University in 1993. Hejoined NTT Basic Research Laboratories, Nippon Telegraph and Telephone Corporation in 1986, and was promoted to Senior Distinguished Scientist in 2011. He served as Director of the Japanese Society of Applied Physics (JSAP) in 2008 and 2009, and is a Fellow of the Institute of Physics (London) and the Japan Society of Applied Physics.