quantum electronics


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quantum electronics

n (functioning as singular)
1. (Atomic Physics) the application of quantum mechanics and quantum optics to the study and design of electronic devices
2. (Electronics) the application of quantum mechanics and quantum optics to the study and design of electronic devices
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The agreement, signed at the MANA offices in Tsukuba, Japan, by Dr Marc Vermeersch, QEERI's executive director, and Dr Takayoshi Sasaki, director of MANA, will enable researchers from QEERI's Disruptive Technologies Program, part of QEERI's Energy Center, to conduct joint research on the development of various nano-electronic devices including sensors and quantum electronics. Such devices offer several advantages over conventional silicon-based technologies and have a significant potential for building the next generation of computers and sensors.
The agreement, signed at the Mana offices in Tsukuba, Japan, by Dr Marc Vermeersch, Qeeri's executive director, and Dr Takayoshi Sasaki, director of Mana, will enable researchers from Qeeri's Disruptive Technologies Programme, part of Qeeri's Energy Centre, to conduct joint research on the development of various nano-electronic devices including sensors and quantum electronics. Such devices offer several advantages over conventional silicon-based technologies and have a significant potential for building the next generation of computers and sensors.
[27] Silverstone J.W., Bonneau D., O'Brien J.L., Thompson M.G., Silicon quantum photonics, IEEE Journal of Selected Topics in Quantum Electronics, Vol.
At KITs Research Laboratory, three research groups of Professors Thomas Zwick, Ulrich Lemmer, and Christian Koos from the Institute of Radio Frequency Engineering and Electronics, Light Technology Institute, and Institute of Photonics and Quantum Electronics are involved in DiFeMiS (German acronym of digital manufacture of THz microelectronics systems).
He is a specialist in lasers, quantum electronics, quantum optics, nonlinear optics, nano-optics, and radiation damage in semiconductors.
This quantum electronics component switches electrical current by controlled repositioning of a single atom, now also in the solid state in a gel electrolyte.
Optics Letters covers the latest research in optical science, including optical measurements, optical components and devices, atmospheric optics, biomedical optics, Fourier optics, integrated optics, optical processing, optoelectronics, lasers, nonlinear optics, optical storage and holography, optical coherence, polarization, quantum electronics, ultrafast optical phenomena, photonic crystals and fiber optics.
Chan, "Optical space communications," IEEE Journal of Selected Topics in Quantum Electronics, vol.
Citation: Yue Zhuo et al., "Quantitative imaging of cell membrane-associated effective mass density using Photonic Crystal Enhanced Microscopy (PCEM)," Progress in Quantum Electronics, 2016; 50: 1 DOI: 10.1016/j.pquantelec.2016.10.001
Ikeda, "Achieving Broad-Area Laser Diodes with High Output Power and Single-Lobed Far-Field Patterns in the Lateral Direction by Loading a Modal Reflector," IEEE Journal of Quantum Electronics, vol.
Vrtilck, "Experimental and Theoretical Investigation of the Nitrogen Laser", IEEE Journal of Quantum Electronics, vol.

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