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Keywords:The usage of imagine | What are the abbreviations for QDR and QDM in civil aviation | Summary of the usage of six modal verbs in German | The usage of imagine | Thermal flow meter
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1. Usage of imagine
imagine i.mag. ineAHD: [¹ - m ² j "¹ n] D.J. [i6m # d9in] K.K. [! 6m # d9! N] v. (verb) i.mag. in, i.mag. in, i.mag. ins v. tr. (transitive verb) To form a mental picture or image of. Imagine: to form an image or likeness of something in the mind To think; Conjecture: Thinking; To have a notice of or about without an adequate foundation; Fancy: conjecture: forming an idea without sufficient basis; Fantasy: She imagines herself to be a true artist. She imagines herself to be a true artist. v. intr. (intransitive verb) To employ the imagination. Imagination: To use imagination to make a guess; Conjecture. Conjecture; Imagine youve been shipwrecked. Imagine youve been shipwrecked. Try to imagine a jet which is more than seventy meters long and more than five stories high at the tail." Try to imagine a jet plane that is over 70 meters long, with its tail taller than a five story building. I imagined him as a big tall man. He imagines that people dont believe him. He always thinks that people dont trust him.
2. One week paper introduction in Science (published on April 23, 2021)
Compiled | Wei Jiu Science, 23 APRIL 2021, VOL 372, ISSUE 6540 "Science" April 23, 2021, Volume 372, Issue 6540 Physics Josephson junction infrared single photon detector Author: Evan D. Walsh, Woochan Jung, Gil-Ho Lee, Dmitri K. Efetov, Bae-Ian Wu, K.-F. Huang, et al. Link: https://science.sciencemag.org/content/372/6540/409 The Josephson junction is a superconducting device used for high-sensitivity magnetometers and voltage amplifiers, and is also the foundation of high-performance low-temperature computers and superconducting quantum computers. Although the quasi particles generated by Coopers fractu
re can reduce device performance, this phenomenon also provides an opportunity for sensitive detection of electromagnetic radiation. The research group demonstrated the detection of a single near-infrared photon by coupling photons into a localized surface plasmon of a graphene based Josephson junction. The research group revealed the key role of quasi particles generated by absorbing photons in the detection mechanism using photon induced switching statistics with current bias devices. Photon sensitivity will provide high-speed, low-power optical interconnects for future superconducting computing architectures. AbstractJosephson junctions are superconducting devices used as high-sensitivity magnetometers and voltage amplifiers as well as the basis of high-performance cryogenic computers and superconducting quantum computers. Although device performance can be degraded by the generation of quasiparticles formed from broken Cooper pairs, this phenomenon also opens opportunities to sensitively detect electromagnetic radiation. We demonstrate single near-infrared photon detection by coupling photons to the localized surface plasmons of a graphene-based Josephson junction. Using the photon-induced switching statistics of the current-biased device, we reveal the critical role of quasiparticles generated by the absorbed photon in the detection mechanism. The photon sensitivity will enable a high-speed, low-power optical interconnect for future superconducting computing architectures. Higher-dimensional supersymmetric microlaser arrays High dimensional supersymmetric micro laser array Author: Xingdu Qiao, Bikashkali Midya, Zihe Gao, Zhifeng Zhang, Haoqi Zhao, Tianwei Wu, et al. Link: https://science.sciencemag.org/conten『SILVER Official Website SERVICE』