Measurement-based quantum computing with valence-bond-solids
Measurement-based quantum computing (MBQC) is a model of quantum computing that proceeds by sequential measurements of individual spins in an entangled resource state. However, it remains a challenge to produce efficiently such resource states. Would it be possible to generate these states by simply...
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sg-ntu-dr.10356-983842020-03-07T12:48:42Z Measurement-based quantum computing with valence-bond-solids Kwek, Leong Chuan. Wei, Zhaohui. Zeng, Bei. Institute of Advanced Studies DRNTU::Science::Physics::Atomic physics::Quantum theory Measurement-based quantum computing (MBQC) is a model of quantum computing that proceeds by sequential measurements of individual spins in an entangled resource state. However, it remains a challenge to produce efficiently such resource states. Would it be possible to generate these states by simply cooling a quantum many-body system to its ground state? Cluster states, the canonical resource states for MBQC, do not occur naturally as unique ground states of physical systems. This inherent hurdle has led to a significant effort to identify alternative resource states that appear as ground states in spin lattices. Recently, some interesting candidates have been identified with various valence-bond-solid (VBS) states. In this review, we provide a pedagogical introduction to recent progress regarding MBQC with VBS states as possible resource states. This study has led to an interesting interdisciplinary research area at the interface of quantum information science and condensed matter physics. 2013-07-26T06:16:21Z 2019-12-06T19:54:39Z 2013-07-26T06:16:21Z 2019-12-06T19:54:39Z 2012 2012 Journal Article Kwek, L. C., Wei, Z., & Zeng, B. (2012). Measurement-Based Quantum Computing With Valence-Bond-Solids. International Journal of Modern Physics B, 26(02). https://hdl.handle.net/10356/98384 http://hdl.handle.net/10220/12383 10.1142/S0217979212300022 en International journal of modern physics B © 2012 World Scientific Publishing Company. |
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DRNTU::Science::Physics::Atomic physics::Quantum theory Kwek, Leong Chuan. Wei, Zhaohui. Zeng, Bei. Measurement-based quantum computing with valence-bond-solids |
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Measurement-based quantum computing (MBQC) is a model of quantum computing that proceeds by sequential measurements of individual spins in an entangled resource state. However, it remains a challenge to produce efficiently such resource states. Would it be possible to generate these states by simply cooling a quantum many-body system to its ground state? Cluster states, the canonical resource states for MBQC, do not occur naturally as unique ground states of physical systems. This inherent hurdle has led to a significant effort to identify alternative resource states that appear as ground states in spin lattices. Recently, some interesting candidates have been identified with various valence-bond-solid (VBS) states. In this review, we provide a pedagogical introduction to recent progress regarding MBQC with VBS states as possible resource states. This study has led to an interesting interdisciplinary research area at the interface of quantum information science and condensed matter physics. |
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Institute of Advanced Studies |
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Institute of Advanced Studies Kwek, Leong Chuan. Wei, Zhaohui. Zeng, Bei. |
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Article |
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Kwek, Leong Chuan. Wei, Zhaohui. Zeng, Bei. |
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Kwek, Leong Chuan. |
title |
Measurement-based quantum computing with valence-bond-solids |
title_short |
Measurement-based quantum computing with valence-bond-solids |
title_full |
Measurement-based quantum computing with valence-bond-solids |
title_fullStr |
Measurement-based quantum computing with valence-bond-solids |
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Measurement-based quantum computing with valence-bond-solids |
title_sort |
measurement-based quantum computing with valence-bond-solids |
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2013 |
url |
https://hdl.handle.net/10356/98384 http://hdl.handle.net/10220/12383 |
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