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Quantum information science

Quantum information science is a field that combines the principles of quantum mechanics with information science to study the processing, analysis, and transmission of information. It covers both theoretical and experimental aspects of quantum physics, including the limits of what can be achieved with quantum information. The term quantum information theory is sometimes used, but it does not include experimental research and can be confused with a subfield of quantum information science that deals with the processing of quantum information.

Scientific and engineering studies Edit

Quantum teleportation, entanglement and the manufacturing of quantum computers depend on a comprehensive understanding of quantum physics and engineering. Google and IBM have invested significantly in quantum computer hardware research, leading to significant progress in manufacturing quantum computers since the 2010s. Currently, it is possible to create a quantum computer with over 100 qubits, but the error rate is high due to the lack of suitable materials for quantum computer manufacturing.[1] Majorana fermions may be a crucial missing material.[2]

Quantum cryptography devices are now available for commercial use. The one time pad, a cipher used by spies during the Cold War, uses a sequence of random keys for encryption. These keys can be securely exchanged using quantum entangled particle pairs, as the principles of the no-cloning theorem and wave function collapse ensure the secure exchange of the random keys. The development of devices that can transmit quantum entangled particles is a significant scientific and engineering goal.[citation needed]

Qiskit, Cirq and Q Sharp are popular quantum programming languages. Additional programming languages for quantum computers are needed, as well as a larger community of competent quantum programmers. To this end, additional learning resources are needed, since there are many fundamental differences in quantum programming which limits the amount of skills that can be carried over from traditional programming.[citation needed]

Related mathematical subjects Edit

Quantum algorithm and quantum complexity theory are two of the subjects in algorithms and computational complexity theory. In 1994, mathematician Peter Shor introduced a quantum algorithm for prime factorization that, with a quantum computer containing 4,000 logical qubits, could potentially break widely used ciphers like RSA and ECC, posing a major security threat. This led to increased investment in quantum computing research and the development of post-quantum cryptography to prepare for the quantum computing era.[citation needed]

See also Edit

References Edit

  1. ^ Shiba, K., Sakamoto, K., Yamaguchi, K., Malla, D.B. & Sogabe, T. 2019, Convolution filter embedded quantum gate autoencoder, Cornell University Library, arXiv.org, Ithaca.
  2. ^ Chiu, Ching-Kai; Teo, Jeffrey C. Y.; Schnyder, Andreas P.; Ryu, Shinsei (August 31, 2016). "Classification of topological quantum matter with symmetries". Reviews of Modern Physics. 88 (3): 035005. arXiv:1505.03535. Bibcode:2016RvMP...88c5005C. doi:10.1103/RevModPhys.88.035005.

External links Edit

  • Quantiki – quantum information science portal and wiki.
  • European roadmap on Quantum Information Processing and Communication
  • QIIC – Quantum Information, Imperial College London.
  • – Quantum Information Group, University of Leeds. The quantum information group at the University of Leeds is engaged in researching a wide spectrum of aspects of quantum information. This ranges from algorithms, quantum computation, to physical implementations of information processing and fundamental issues in quantum mechanics. Also contains some basic tutorials for the lay audience.
  • mathQI Research Group on Mathematics and Quantum Information.
  • CQIST Center for Quantum Information Science & Technology at the University of Southern California
  • CQuIC Center for Quantum Information and Control, including theoretical and experimental groups from University of New Mexico, University of Arizona.
  • CQT Centre for Quantum Technologies at the National University of Singapore
  • CQC2T Centre for Quantum Computation and Communication Technology
  • QST@LSU Quantum Science and Technologies Group at Louisiana State University

quantum, information, science, field, that, combines, principles, quantum, mechanics, with, information, science, study, processing, analysis, transmission, information, covers, both, theoretical, experimental, aspects, quantum, physics, including, limits, wha. Quantum information science is a field that combines the principles of quantum mechanics with information science to study the processing analysis and transmission of information It covers both theoretical and experimental aspects of quantum physics including the limits of what can be achieved with quantum information The term quantum information theory is sometimes used but it does not include experimental research and can be confused with a subfield of quantum information science that deals with the processing of quantum information Contents 1 Scientific and engineering studies 2 Related mathematical subjects 3 See also 4 References 5 External linksScientific and engineering studies EditQuantum teleportation entanglement and the manufacturing of quantum computers depend on a comprehensive understanding of quantum physics and engineering Google and IBM have invested significantly in quantum computer hardware research leading to significant progress in manufacturing quantum computers since the 2010s Currently it is possible to create a quantum computer with over 100 qubits but the error rate is high due to the lack of suitable materials for quantum computer manufacturing 1 Majorana fermions may be a crucial missing material 2 Quantum cryptography devices are now available for commercial use The one time pad a cipher used by spies during the Cold War uses a sequence of random keys for encryption These keys can be securely exchanged using quantum entangled particle pairs as the principles of the no cloning theorem and wave function collapse ensure the secure exchange of the random keys The development of devices that can transmit quantum entangled particles is a significant scientific and engineering goal citation needed Qiskit Cirq and Q Sharp are popular quantum programming languages Additional programming languages for quantum computers are needed as well as a larger community of competent quantum programmers To this end additional learning resources are needed since there are many fundamental differences in quantum programming which limits the amount of skills that can be carried over from traditional programming citation needed Related mathematical subjects EditQuantum algorithm and quantum complexity theory are two of the subjects in algorithms and computational complexity theory In 1994 mathematician Peter Shor introduced a quantum algorithm for prime factorization that with a quantum computer containing 4 000 logical qubits could potentially break widely used ciphers like RSA and ECC posing a major security threat This led to increased investment in quantum computing research and the development of post quantum cryptography to prepare for the quantum computing era citation needed See also EditGlossary of quantum computing Information theory Quantum mechanics Quantum computing Quantum error correction Quantum information theory Quantum cryptography and its generalization quantum communication Quantum communication complexity Quantum entanglement as seen from an information theoretic point of view Quantum dense coding Quantum teleportation Entanglement assisted classical capacity No communication theorem Quantum capacity Quantum communication channel Quantum decision tree complexity Timeline of quantum computing and communicationReferences Edit Shiba K Sakamoto K Yamaguchi K Malla D B amp Sogabe T 2019 Convolution filter embedded quantum gate autoencoder Cornell University Library arXiv org Ithaca Chiu Ching Kai Teo Jeffrey C Y Schnyder Andreas P Ryu Shinsei August 31 2016 Classification of topological quantum matter with symmetries Reviews of Modern Physics 88 3 035005 arXiv 1505 03535 Bibcode 2016RvMP 88c5005C doi 10 1103 RevModPhys 88 035005 Nielsen Michael A Chuang Isaac L June 2012 Quantum Computation and Quantum Information 10th anniversary ed Cambridge Cambridge University Press ISBN 9780511992773 OCLC 700706156 External links EditQuantiki quantum information science portal and wiki ERA Pilot QIST WP1 European roadmap on Quantum Information Processing and Communication QIIC Quantum Information Imperial College London QIP Quantum Information Group University of Leeds The quantum information group at the University of Leeds is engaged in researching a wide spectrum of aspects of quantum information This ranges from algorithms quantum computation to physical implementations of information processing and fundamental issues in quantum mechanics Also contains some basic tutorials for the lay audience mathQI Research Group on Mathematics and Quantum Information CQIST Center for Quantum Information Science amp Technology at the University of Southern California CQuIC Center for Quantum Information and Control including theoretical and experimental groups from University of New Mexico University of Arizona CQT Centre for Quantum Technologies at the National University of Singapore CQC2T Centre for Quantum Computation and Communication Technology QST LSU Quantum Science and Technologies Group at Louisiana State University Retrieved from https en wikipedia org w index php title Quantum information science amp oldid 1169973431, wikipedia, wiki, book, books, library,

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