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检索条件"机构=Institute for Quantum Technology and Engineering Computing"
1008 条 记 录,以下是771-780 订阅
排序:
Illinois Express quantum Network (IEQNET): Metropolitan-scale experimental quantum networking over deployed optical fiber
arXiv
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arXiv 2021年
作者: Chung, Joaquin Kanter, Gregory Lauk, Nikolai Valivarthi, Raju Wu, Wenji Ceballos, Russell R. Peña, Cristián Sinclair, Neil Thomas, Jordan Xie, Si Kettimuthu, Rajkumar Kumar, Prem Spentzouris, Panagiotis Spiropulu, Maria Data Science and Learning Division Argonne National Laboratory 9700 S Cass Ave. LemontIL60439 United States University of Chicago Consortium for Advanced Science and Engineering 924 E 57th St ChicagoIL60637 United States NuCrypt LLC 1840 Oak Ave EvanstonIL60201 United States Center for Photonic Communication and Computing Department of Electrical and Computer Engineering McCormick School of Engineering and Applied Science Northwestern University 2145 Sheridan Road EvanstonIL60208-3118 United States Division of Physics Mathematics and Astronomy California Institute of Technology 1200 E. California Blvd. PasadenaCA91125 United States California Institute of Technology 1200 E. California Blvd. PasadenaCA91125 United States Fermi National Accelerator Laboratory Kirk Rd and Pine St BataviaIL60510 United States Department of Chemistry Physics and Engineering Studies Chicago State University 9501 S. King Dr. ChicagoIL60628 United States Pittsburgh Quantum Institute B4 Thaw Hall 4061 O'Hara Street PittsburghPA15260 United States John A. Paulson School of Engineering and Applied Sciences Harvard University 29 Oxford St. CambridgeMA02138 United States 2205 Tech Drive Suite 1-160 EvanstonIL60208 United States Department of Physics and Astronomy Northwestern University 2145 Sheridan Road EvanstonIL60208-3112 United States
The Illinois Express quantum Network (IEQNET) is a program to realize metro-scale quantum networking over deployed optical fiber using currently available technology. IEQNET consists of multiple sites that are geograp... 详细信息
来源: 评论
Tape-time processing: Kinetics and mechanisms of native oxidation of transition metal dichalcogenides ZrSxSe2-x and MoS2
arXiv
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arXiv 2020年
作者: Jo, Seong Soon Singh, Akshay Yang, Liqiu Tiwari, Subodh C. Hong, Sungwook Krishnamoorthy, Aravind Sales, Maria Gabriela Oliver, Sean M. Fox, Joshua Cavalero, Randal L. Snyder, David W. Vora, Patrick M. McDonnell, Stephen J. Vashishta, Priya Kalia, Rajiv K. Nakano, Aiichiro Jaramillo, Rafael Department of Materials Science and Engineering Massachusetts Institute of Technology CambridgeMA02139 United States Collaboratory for Advanced Computing and Simulation University of Southern California Los AngelesCA90089 United States Department of Physics and Engineering California State University BakersfieldCA93311 United States Department of Materials Science and Engineering University of Virginia CharlottesvilleVA22904 United States Electronic Materials and Devices Department Applied Research Laboratory and 2-Dimensional Crystal Consortium Materials Research Institute Pennsylvania State University University ParkPA16802 United States Department of Physics and Astronomy George Mason University FairfaxVA22030 United States Quantum Materials Center George Mason University FairfaxVA22030 United States
A thorough understanding of the processing and properties of native oxides is essential for designing semiconductor devices. This is no less true for nanomaterials than it is for legacy semiconductors such as silicon,... 详细信息
来源: 评论
Quantifying the unextendibility of entanglementa
arXiv
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arXiv 2019年
作者: Wang, Kun Wang, Xin Wilde, Mark M. Institute for Quantum Computing Baidu Research Beijing100193 China Guangzhou China Hearne Institute for Theoretical Physics Department of Physics and Astronomy Center for Computation and Technology Louisiana State University Baton RougeLA70803 United States School of Electrical and Computer Engineering Cornell University IthacaNY14850 United States
Entanglement is a striking feature of quantum mechanics, and it has a key property called unextendibility. In this paper, we present a framework for quantifying and investigating the unextendibility of general biparti... 详细信息
来源: 评论
Symmetry-protected ideal type-ii weyl phonons in cdte
arXiv
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arXiv 2019年
作者: Xia, B.W. Wang, R. Chen, Z.J. Zhao, Y.J. Xu, H. Department of Physics Shenzhen Key Laboratory of Quantum Science and Engineering Southern University of Science and Technology Shenzhen518055 China Department of Physics Hong Kong University of Science and Technology Clear Water Bay Hong Kong China Institute for Structure and Function & Department of physics Chongqing University Chongqing400044 China Department of Physics South China University of Technology Guangzhou510640 China Center for Quantum Computing Peng Cheng Laboratory Shenzhen518055 China
Nontrivial low-energy excitations of crystalline solids have insightfully strengthened understanding of elementary particles in quantum field theory. Usually, topological quasiparticles are mainly focused on fermions ... 详细信息
来源: 评论
U(1) CS Theory vs SL(2) CS Formulation: Boundary Theory and Wilson Line
arXiv
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arXiv 2020年
作者: Huang, Xing Ma, Chen-Te Shu, Hongfei Wu, Chih-Hung Institute of Modern Physics Northwest University Xi'An710069 China Shaanxi Key Laboratory for Theoretical Physics Frontiers Xi'An710069 China NSFC-SPTP Peng Huanwu Center for Fundamental Theory Xi'An710127 China Asia Pacific Center for Theoretical Physics Pohang University of Science and Technology Gyeongsangbuk-do Pohang37673 Korea Republic of Guangdong Provincial Key Laboratory of Nuclear Science Institute of Quantum Matter South China Normal University Guangdong Guangzhou510006 China School of Physics and Telecommunication Engineering South China Normal University Guangdong Guangzhou510006 China Guangdong-Hong Kong Joint Laboratory of Quantum Matter Southern Nuclear Science Computing Center South China Normal University Guangzhou510006 China The Laboratory for Quantum Gravity and Strings Department of Mathematics and Applied Mathematics University of Cape Town Private Bag Rondebosch7700 South Africa Beijing101408 China Tsinghua University Beijing100084 China Nordita KTH Royal Institute of Technology Stockholm University Roslagstullsbacken 23 StockholmSE-106 91 Sweden Department of Physics Tokyo Institute of Technology Tokyo152-8551 Japan Department of Physics University of California Santa BarbaraCA93106 United States
We first derive the boundary theory from the U(1) Chern-Simons theory. The boundary action on an n-sheet manifold appears from its back-reaction of the Wilson line. The reason is that the U(1) Chern-Simons theory can ... 详细信息
来源: 评论
quantum engineering with hybrid magnonics systems and materials
arXiv
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arXiv 2021年
作者: Awschalom, D.D. Du, C.H.R. He, R. Heremans, F.J. Hoffmann, A. Hou, J.T. Kurebayashi, H. Li, Y. Liu, L. Novosad, V. Sklenar, J. Sullivan, S.E. Sun, D. Tang, H. Tiberkevich, V. Trevillian, C. Tsen, A.W. Weiss, L.R. Zhang, W. Zhang, X. Zhao, L. Zollitsch, C.W. Pritzker School of Molecular Engineering University of Chicago ChicagoIL United States Materials Science Division Center for Molecular Engineering Argonne National Laboratory LemontIL United States Department of Physics University of California San Diego San DiegoCA92093 United States Department of Electrical and Computer Engineering Texas Tech University LubbockTX79409 United States Materials Research Laboratory Department of Materials Science and Engineering University of Illinois at Urbana-Champaign UrbanaIL61801 United States Electrical Engineering and Computer Science Massachusetts Institute of Technology CambridgeMA United States London Centre for Nanotechnology University College London 17-19 Gordon Street LondonWCH1 0AH United Kingdom Materials Science Division Argonne National Laboratory LemontIL United States Department of Physics and Astronomy Wayne State University DetroitMI48201 United States Department of Physics North Carolina State University RaleighNC27695 United States Department of Electrical Engineering Yale University New HavenCT United States Department of Physics Oakland University MI48309 United States Institute for Quantum Computing Department of Chemistry University of Waterloo WaterlooON Canada Center for Nanoscale Materials Argonne National Laboratory LemontIL United States Department of Physics University of Michigan Ann ArborMI48109 United States
quantum technology has made tremendous strides over the past two decades with remarkable advances in materials engineering, circuit design and dynamic operation. In particular, the integration of different quantum mod... 详细信息
来源: 评论
Tunable quantum switch realized with a single Λ-level atom coupled to the microtoroidal cavity
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Physical Review A 2019年 第5期100卷 053851-053851页
作者: Davit Aghamalyan Jia-Bin You Hong-Son Chu Ching Eng Png Leonid Krivitsky Leong Chuan Kwek Centre for Quantum Technologies National University of Singapore 3 Science Drive 2 Singapore 117543 Institute of High Performance Computing A*STAR (Agency for Science Technology and Research) 1 Fusionopolis Way #16-16 Connexis Singapore 138632 Institute of Materials Research and Engineering A*STAR (Agency for Science Technology and Research) 2 Fusionopolis Way #08-03 Innovis Singapore 138634 MajuLab CNRS-UNS-NUS-NTU International Joint Research Unit UMI 3654 Singapore National Institute of Education and Institute of Advanced Studies Nanyang Technological University 1 Nanyang Walk Singapore 637616
We propose a realization of the quantum switch for coherent light fields for the fiber-coupled microdisk cavities. We demonstrate by combining numerical and analytical methods that both in strong coupling and bad cavi... 详细信息
来源: 评论
Design for Elliptical Micropillar Triplets for a Highly Efficient quantum-Dot Entangle Photon Pair Source
Design for Elliptical Micropillar Triplets for a Highly Effi...
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Asia Communications and Photonics Conference and Exhibition (ACP)
作者: Zhenhua Li Siwu Li Haolin Lu Shunfa Liu Jiawei Yang Ying Yu Siyuan Yu State Key Laboratory of Optoelectronic Materials and Technologies School of Electronics and Information Technology Sun Yat-sen University Guangzhou China State Key Laboratory of High Performance Computing Institute for Quantum Information College of Computer National University of Defense Technology Changsha China Photonics Group Merchant Venturers School of Engineering University of Bristol Bristol UK
A design of quantum-dot-based polarized entangle photon pair source by implementing three overlapping elliptical micropillars, leading to >80% collection efficiency and high Purcell factor for both exciton and biex... 详细信息
来源: 评论
Supercurrent interference in semiconductor nanowire Josephson junctions
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Physical Review B 2019年 第15期100卷 155431-155431页
作者: Praveen Sriram Sandesh S. Kalantre Kaveh Gharavi Jonathan Baugh Bhaskaran Muralidharan Department of Electrical Engineering Indian Institute of Technology Bombay Powai Mumbai 400076 India Department of Physics Indian Institute of Technology Bombay Powai Mumbai 400076 India Institute for Quantum Computing University of Waterloo Waterloo Ontario Canada N2L 3G1 Department of Physics and Astronomy University of Waterloo Waterloo Ontario Canada N2L 3G1 Department of Chemistry University of Waterloo Waterloo Ontario Canada N2L 3G1
Semiconductor-superconductor hybrid systems provide a promising platform for hosting unpaired Majorana fermions towards the realization of fault-tolerant topological quantum computing. In this study we employ the Keld... 详细信息
来源: 评论
quantum teleportation of photonic qudits using linear optics
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Physical Review A 2019年 第3期100卷 032330-032330页
作者: Chenyu Zhang J. F. Chen Chaohan Cui Jonathan P. Dowling Z. Y. Ou Tim Byrnes State Key Laboratory of Precision Spectroscopy School of Physical and Material Sciences East China Normal University Shanghai 200062 China New York University Shanghai 1555 Century Ave Shanghai 200122 China Shenzhen Institute for Quantum Science and Engineering and Department of Physics Southern University of Science and Technology Shenzhen 518055 China College of Optical Sciences University of Arizona Tucson Arizona 85718 USA CAS Key Laboratory of Quantum Information University of Science and Technology of China Hefei 230026 China Synergetic Innovation Center of Quantum Information & Quantum Physics University of Science and Technology of China Hefei Anhui 230026 China Hearne Institute for Theoretical Physics Department of Physics and Astronomy Louisiana State University Baton Rouge Louisiana 70803 USA CAS-Alibaba Quantum Computing Laboratory USTC Shanghai 201315 China NYU-ECNU Institute of Physics at NYU Shanghai 3663 Zhongshan Road North Shanghai 200062 China National Institute of Information and Communications Technology 4-2-1 Nukui-Kitamachi Koganei Tokyo 184-8795 Japan Department of Physics Indiana University-Purdue University Indianapolis 402 North Blackford Street Indianapolis Indiana 46202 USA Quantum Institute of Light and Atoms Department of Physics East China Normal University Shanghai 200241 China National Institute of Informatics 2-1-2 Hitotsubashi Chiyoda-ku Tokyo 101-8430 Japan Department of Physics New York University New York New York 10003 USA
One of the challenges of photon-based quantum teleportation is that both a source of entangled photons and an entangled basis measurement are required. For qubits, one can perform a probabilistic entangled basis measu... 详细信息
来源: 评论