Special Issue:
SPECIAL TOPIC — Quantum computation and quantum simulation
|
TOPICAL REVIEW—Quantum computation and quantum simulation |
Prev
Next
|
|
|
Review of quantum simulation based on Rydberg many-body system |
Zheng-Yuan Zhang(张正源), Dong-Sheng Ding(丁冬生)†, and Bao-Sen Shi(史保森) |
Key Laboratory of Quantum Information, University of Science and Technology of China, Hefei 230026, China |
|
|
Abstract Quantum simulation has been developed extensively over the past decades, widely applied to different models to explore dynamics in the quantum regime. Rydberg atoms have strong dipole-dipole interactions and interact with each other over a long distance, which makes it straightforward to build many-body interacting quantum systems to simulate specific models. Additionally, neutral atoms are easily manipulated due to their weak interactions. These advantages make Rydberg many-body system an ideal platform to implement quantum simulations. This paper reviews several quantum simulations for different models based on Rydberg many-body systems, including quantum Ising models in one dimension and two dimensions mainly for quantum magnetism, XY model for excitation transport, SSH model for symmetry-protected topological phases, and critical self-organized behaviors in many-body systems. Besides, some challenges and promising directions of quantum simulations based on Rydberg many-body system are discussed in this paper.
|
Received: 16 September 2020
Revised: 02 November 2020
Accepted manuscript online: 30 December 2020
|
PACS:
|
03.67.Ac
|
(Quantum algorithms, protocols, and simulations)
|
|
03.65.Aa
|
(Quantum systems with finite Hilbert space)
|
|
03.65.Vf
|
(Phases: geometric; dynamic or topological)
|
|
Corresponding Authors:
†Corresponding author. E-mail: dds@ustc.edu.cn
|
Cite this article:
Zheng-Yuan Zhang(张正源), Dong-Sheng Ding(丁冬生), and Bao-Sen Shi(史保森) Review of quantum simulation based on Rydberg many-body system 2021 Chin. Phys. B 30 020307
|
1 Feynman R 1982 Int. J. Theor. Phys. 21 467 2 Kim K, Chang M S, Korenblit S, Islam R, Edward E E, Freericks J K, Lin G D, Duan L M and Monroe C 2010 Nature 465 590 3 Barreiro J T, M\"uller M, Schindler P, Nigg D, Monz T, Chwalla M, Hennrich M, Roos C F, Zoller P and Blatt R 2011 Nature 470 486 4 Lanyon B P, Hempel C, Nigg D, M\"uller M, Gerritsma R, Z\"ahringer F, Schindler P, Barreiro J T, Rambach M, Kirchmair G, Hennrich M, Zoller P, Blatt R and Roos C F 2011 Science 334 57 5 Neeley M, Ansmann M, Bialczak R C, Hofheinz M, Lucero E, O'Connell A D, Sank D, Wang H, Wenner J, Cleland A N, Geller M R and Martinis J M 2009 Science 325 722 6 Houck A A, T\"ureci H E and Koch J 2012 Nat. Phys. 8 292 7 Broome M A, Fedrizzi A, Lanyon B P, Kassal I, Aspuru-Guzik A and White A G 2010 Phys. Rev. Lett. 104 153602 8 Peruzzo A, Lobino M, Matthews J C F, Matsuda N, Politi A, Poulios K, Zhou X Q, Lahini Y, Ismail N, W\"orhoff K, Bromberg Y, Silberberg Y, Thompson M G and OBrien J L 2010 Science 329 1500 9 Bark W S, Gillen J I, Peng A, Folling S and Greiner M A 2009 Nature 462 74 10 Weitenberg C, Endres M, Sherson J F, Cheneau M, Schau\ss P, Fukuhara T, Bloch I and Kuhr S 2011 Nature 471 319 11 Weimer H, M\"uller M, Lesanovsky I, Zoller P and B\"uchler H P 2010 Nat. Phys. 6 382 12 Browaeys A and Lahaye T 2020 Nat. Phys. 16 132 13 Ga\"etan A, Miroshnychenko Y, Wilk T, Chotia A, Viteau M, Comparat D, Pillet P, Browaeys A and Grangier P 2009 Nat. Phys. 5 115 14 Urban E, Johnson T A, Henage T, Isenhower L, Yavuz D D, Walker T G and Saffman M 2009 Nat. Phys. 5 110 15 Dudin Y O, Li L, Bariani F and Kuzmich A 2012 Nat. Phys. 8 790 16 Labuhn H, Barredo D, Ravets S, L\'es\'eleuc S, Macri T, Lahaye T and Browaeys A 2016 Nature 534 667 17 Bernien H, Schwartz S, Keesling A, Levine H, Omran A, Pichler H, Choi S, Zibrov A S, Endres M, Greiner M, Vuleti\'c V and Lukin M D 2017 Nature 551 579 18 Keesling A, Omran A, Levine H, Bernien H, Pichler H, Choi S, Samajdar R, Schwartz S, Silvi P, Sachdev S, Zoller P, Endres M, Greiner M, Vuleti\'c V and Lukin M D 2019 Nature 568 207 19 Barredo D, Labuhn H, Ravets S, Lahaye T, Browaeys A and Adams C S 2015 Phys. Rev. Lett. 114 113002 20 Chen X, Gu Z C, Liu Z X and Wen X G 2012 Science 338 1604 21 L\'es\'eleue S, Lienhard V, Scholl P, Barrendo D, Weber S, Lang N, B\"uchler H P, Lahaye T and Browaeys 2019 Science 365 775 22 Schau\ss P, Cheneau M, Endres M, Fukuhara T, Hild S, Omran A, Pohl T, Gross C, Kuhr S and Bloch I 2012 Nature 491 87 23 Schau\ss P, Zeiher J, Fukuhara T, Hild S, Cheneau M, Macr\`í T, Pohl T, Bloch I and Gross C 2015 Science 347 1455 24 Monz T 2011 Phys. Rev. Lett. 106 130506 25 Islam R, Senko C, Campbell W C, Korenblit S, Smith J, Lee A, Edwards E E, Wang C C J, Freericks J K and Monroe C 2013 Science 340 583 26 Mazurenko A, Chiu C S, Ji G, Parsons M F, Kansz-Nagy M, Schmidt R, Grusdt F, Demler E, Greif D and Greiner M 2017 Nature 545 462 27 Lucas A 2014 Front. Phys. 2 5 28 Britton J W, Sawyer B C, Keith A C, Wang C C J, Freericks J K, Uys H, Biercuk M J and Bollinger J J 2012 Nature 484 489 29 Bohnet J G, Sawyer B C, Britton J W, Wall M L, Rey A M, Foss-Feig M and Bollinger 2016 Science 352 1297 30 Rønnow T F, Wang Z, Job J, Boixo S, Isakov S V, Wecker D, Martinis J M, Lidar D A and Troyer M 2014 Science 345 420 31 McMahon P L, Marandi A, Haribara Y, Hamerly R, Langrock C, Tamate S, Inagaki T, Takesue H, Utsunomiya S, Aihara K, Byer R, Fejer M M, Mabuchi H and Yamamoto Y 2016 Science 354 614 32 Bakr W S, Peng A, Tai M E, Ma R, Simon J, Gillen J I, F\"olling S, Pollet L and Greiner M 2010 Science 329 547 33 Sherson J F, Weitenberg C, Endres M, Cheneau M, Bloch I and Kuhr S 2010 Nature 467 68 34 Nogrette F, Labuhn H, Ravets S, Barredo D, B\'eguin L, Vernier A, Lahaye T and Browaeys A 2014 Phys. Rev. X 4 021034 35 Lee W, Kim H and Ahn J 2016 Opt. Express 24 9816 36 Barredo D, L\'es\'eleuc S, Lienhard V, Lahaye T and Browaeys A 2016 Science 354 1021 37 Endres M, Bernien H, Keesling A, Levine H, Anschuetz E R, Krajenbrink A, Senko C, Vuletic V, Greiner M and Lukin M D 2016 Science 354 1024 38 Nelson K D, Li X and Weiss D S 2007 Nat. Phys. 3 556 39 Whitlock S, Gerritsma R, Fernholz T and Spreeuw R J C 2009 New J. Phys. 11 023021 40 Lienhard V, L\'es\'eleuc S, Barredo D, Lahaye T, Browaeys A, Schuler M, Henry L P and L\"auchli A M 2018 Phys. Rev. X 8 021070 41 Guardado-Sanchez E, Brown P T, Mitra D, Devakul T, Huse D A, Schau\ss P and Bakr W S 2018 Phys. Rev. X 8 021069 42 Sachdev S, Sengupta K and Girvin S M 2002 Phys. Rev. B 66 075128 43 Fendley P, Sengupta K and Sachdev S 2004 Phys. Rev. B 69 075106 44 L\'es\'eleuc S, Weber S, Lienhard V, Barredo D, B\"uchler H P, Lahaye T and Browaeys A 2018 Phys. Rev. Lett. 120 113602 45 Maxwell D, Szwer D J, Paredes-Barato D, Busche H, Pritchard J D, Gauguet A, Weatherill K J, Jones M P A and Adams C S 2013 Phys. Rev. Lett. 110 103001 46 G\"unter G, Schempp H, Robert-de-Saint-Vincent M, Gavryusev V, Helmrich S, Hofmann C S, Whitlock S and Weidem\"uller M 2013 Science 342 954 47 C\ot\'e R, Russell A, Eyler E E and Gould P L 2006 New J. Phys. 8 156 48 W\"uster S, Ates C, Eisfeld A and Rost J M 2010 Phys. Rev. Lett. 105 053004 49 Su W P, Schrieffer J R and Heeger A J 1979 Phys. Rev. Lett. 42 1698 50 Li X P and Sarma S D 2015 Nat. Commun. 6 7137 51 Keles A, Zhao E and Li X P 2020 Phys. Rev. A 101 023624 52 Mohapatra A K, Jachson T R and Adams C S 2007 Phys. Rev. Lett. 98 113003 53 Car C, Ritter R, Wade C G, Adams C S and Weatherill K J 2013 Phys. Rev. Lett. 111 113901 54 Melo N R, Wade C G, \vSibali\'c N, Kondo J M, Adams C S and Weatherill K J 2016 Phys. Rev. A 93 063863 55 Weller D, Urvoy A, Rico A, L\"ow R and K\"ubler H 2016 Phys. Rev. A 94 063820 56 Letscher F, Thomas O, Niederpr\"um T, Fleischhauer M and Ott H 2017 Phys. Rev. X 7 021020 57 Weller D, Shaffer J P, Pfau T, L\"ow R and K\"ubler H 2019 Phys. Rev. A 99 043418 58 Ding D S, Busche H, Shi B S, Guo G C and Adams C S 2020 Phys. Rev. X 10 021023 59 Rhodes C J and Anderson R M 1996 Nature 381 600 60 Malamud B D, MoreinG and Turcotte D L 1998 Science 281 1840 61 Bak P, Tang C and Wiesenfeld K 1987 Phys. Rev. Lett. 59 381 62 Drossel B and Schwabl F 1992 Phys. Rev. Lett. 69 1629 63 Helmrich S, Arias A, Lochead G, Wintermantel T M, Buchhold M, Diehl S and Whitlock S 2020 Nature 577 481 64 Glaetzle A W, van Bijnen R M W, Zoller P and Lechner W A 2017 Nat. Commun. 8 15813 65 Kokail C, Maier C, Bijnen R, Brydges T, Joshi M K, Jurcevic P, Muschik C A, Silvi P, Blatt R, Roos C F and Zoller P 2019 Nature 569 355 67 Norcia M A, Young A W and Kaufman A M 2018 Phys. Rev. X 8 041054 68 Saskin S, Wilson J T, Grinkenmeyer B and Tomson J D 2019 Phys. Rev. Lett. 122 143002 69 Saffman M 2016 J. Phys. B 49 202001 |
No Suggested Reading articles found! |
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
Altmetric
|
blogs
Facebook pages
Wikipedia page
Google+ users
|
Online attention
Altmetric calculates a score based on the online attention an article receives. Each coloured thread in the circle represents a different type of online attention. The number in the centre is the Altmetric score. Social media and mainstream news media are the main sources that calculate the score. Reference managers such as Mendeley are also tracked but do not contribute to the score. Older articles often score higher because they have had more time to get noticed. To account for this, Altmetric has included the context data for other articles of a similar age.
View more on Altmetrics
|
|
|