Literature DB >> 21248751

Entanglement in a solid-state spin ensemble.

Stephanie Simmons1, Richard M Brown, Helge Riemann, Nikolai V Abrosimov, Peter Becker, Hans-Joachim Pohl, Mike L W Thewalt, Kohei M Itoh, John J L Morton.   

Abstract

Entanglement is the quintessential quantum phenomenon. It is a necessary ingredient in most emerging quantum technologies, including quantum repeaters, quantum information processing and the strongest forms of quantum cryptography. Spin ensembles, such as those used in liquid-state nuclear magnetic resonance, have been important for the development of quantum control methods. However, these demonstrations contain no entanglement and ultimately constitute classical simulations of quantum algorithms. Here we report the on-demand generation of entanglement between an ensemble of electron and nuclear spins in isotopically engineered, phosphorus-doped silicon. We combined high-field (3.4 T), low-temperature (2.9 K) electron spin resonance with hyperpolarization of the (31)P nuclear spin to obtain an initial state of sufficient purity to create a non-classical, inseparable state. The state was verified using density matrix tomography based on geometric phase gates, and had a fidelity of 98% relative to the ideal state at this field and temperature. The entanglement operation was performed simultaneously, with high fidelity, on 10(10) spin pairs; this fulfils one of the essential requirements for a silicon-based quantum information processor.

Entities:  

Year:  2011        PMID: 21248751     DOI: 10.1038/nature09696

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  12 in total

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4.  Hydrogenic spin quantum computing in silicon: a digital approach.

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Journal:  Phys Rev Lett       Date:  2003-02-25       Impact factor: 9.161

5.  Preparing high purity initial states for nuclear magnetic resonance quantum computing.

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Journal:  Phys Rev Lett       Date:  2004-07-19       Impact factor: 9.161

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Journal:  Phys Rev Lett       Date:  1988-03-28       Impact factor: 9.161

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Journal:  Phys Rev Lett       Date:  1987-04-20       Impact factor: 9.161

8.  Single-shot readout of an electron spin in silicon.

Authors:  Andrea Morello; Jarryd J Pla; Floris A Zwanenburg; Kok W Chan; Kuan Y Tan; Hans Huebl; Mikko Möttönen; Christopher D Nugroho; Changyi Yang; Jessica A van Donkelaar; Andrew D C Alves; David N Jamieson; Christopher C Escott; Lloyd C L Hollenberg; Robert G Clark; Andrew S Dzurak
Journal:  Nature       Date:  2010-09-26       Impact factor: 49.962

9.  Physical limits of heat-bath algorithmic cooling.

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Journal:  Phys Rev Lett       Date:  2005-04-01       Impact factor: 9.161

10.  High fidelity single qubit operations using pulsed electron paramagnetic resonance.

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Journal:  Phys Rev Lett       Date:  2005-11-08       Impact factor: 9.161

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  14 in total

1.  Embracing the quantum limit in silicon computing.

Authors:  John J L Morton; Dane R McCamey; Mark A Eriksson; Stephen A Lyon
Journal:  Nature       Date:  2011-11-16       Impact factor: 49.962

2.  Bell's inequality violation with spins in silicon.

Authors:  Juan P Dehollain; Stephanie Simmons; Juha T Muhonen; Rachpon Kalra; Arne Laucht; Fay Hudson; Kohei M Itoh; David N Jamieson; Jeffrey C McCallum; Andrew S Dzurak; Andrea Morello
Journal:  Nat Nanotechnol       Date:  2015-11-16       Impact factor: 39.213

3.  Quantum information: Atoms and circuits unite in silicon.

Authors:  Andrea Morello
Journal:  Nat Nanotechnol       Date:  2013-04       Impact factor: 39.213

4.  High-fidelity readout and control of a nuclear spin qubit in silicon.

Authors:  Jarryd J Pla; Kuan Y Tan; Juan P Dehollain; Wee H Lim; John J L Morton; Floris A Zwanenburg; David N Jamieson; Andrew S Dzurak; Andrea Morello
Journal:  Nature       Date:  2013-04-18       Impact factor: 49.962

5.  Optical addressing of an individual erbium ion in silicon.

Authors:  Chunming Yin; Milos Rancic; Gabriele G de Boo; Nikolas Stavrias; Jeffrey C McCallum; Matthew J Sellars; Sven Rogge
Journal:  Nature       Date:  2013-05-02       Impact factor: 49.962

6.  Coherent singlet-triplet oscillations in a silicon-based double quantum dot.

Authors:  B M Maune; M G Borselli; B Huang; T D Ladd; P W Deelman; K S Holabird; A A Kiselev; I Alvarado-Rodriguez; R S Ross; A E Schmitz; M Sokolich; C A Watson; M F Gyure; A T Hunter
Journal:  Nature       Date:  2012-01-18       Impact factor: 49.962

7.  Si:P as a laboratory analogue for hydrogen on high magnetic field white dwarf stars.

Authors:  B N Murdin; Juerong Li; M L Y Pang; E T Bowyer; K L Litvinenko; S K Clowes; H Engelkamp; C R Pidgeon; I Galbraith; N V Abrosimov; H Riemann; S G Pavlov; H-W Hübers; P G Murdin
Journal:  Nat Commun       Date:  2013       Impact factor: 14.919

8.  Measuring central-spin interaction with a spin-bath by pulsed ENDOR: Towards suppression of spin diffusion decoherence.

Authors:  S J Balian; M B A Kunze; M H Mohammady; G W Morley; W M Witzel; C W M Kay; T S Monteiro
Journal:  Phys Rev B Condens Matter Mater Phys       Date:  2012-09-21

9.  Violation of a Leggett-Garg inequality with ideal non-invasive measurements.

Authors:  George C Knee; Stephanie Simmons; Erik M Gauger; John J L Morton; Helge Riemann; Nikolai V Abrosimov; Peter Becker; Hans-Joachim Pohl; Kohei M Itoh; Mike L W Thewalt; G Andrew D Briggs; Simon C Benjamin
Journal:  Nat Commun       Date:  2012-01-03       Impact factor: 14.919

10.  Quenching of dynamic nuclear polarization by spin-orbit coupling in GaAs quantum dots.

Authors:  John M Nichol; Shannon P Harvey; Michael D Shulman; Arijeet Pal; Vladimir Umansky; Emmanuel I Rashba; Bertrand I Halperin; Amir Yacoby
Journal:  Nat Commun       Date:  2015-07-17       Impact factor: 14.919

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