其他
张量网络与神经网络在物理学中的应用和交融
The following article is from 中国物理学会期刊网 Author 张静 谢志远
导语
基于张量网络的数值重正化群方法,被广泛地应用到物理学的研究中,已经成为量子多体计算方法大家庭的重要一员。近年来,基于神经网络的机器学习方法也逐渐渗透到物理学领域,并被成功应用在量子多体等问题的研究中。文章简要综述了近年来张量网络和神经网络在凝聚态物理和统计物理学的应用,并讨论了两者的相互交叉和结合。
关键词 : 张量网络,神经网络,数值重正化群,交融
张静 谢志远 | 作者
中国物理学会期刊网 | 来源
1.引言
2.张量网络的应用
2.2 张量网络在量子格点模型中的应用
2.3 张量网络在其他相关领域的应用
3.神经网络在物理学中的应用
4.张量网络和神经网络的结合
5.总结与展望
参考资料
[1] 乐宏昊,谢志远. 物理,2017,46(7):424;刘耘婧,陈斌斌,李伟.物理,2017,46(7):430;娄捷. 物理,2017,46(7):439[2] Zhao H H,Xie Z Y,Chen Q N et al. Phys. Rev. B,2010,81:174411[3] Orus R. Annals of Physics,2014,349:117[4] Goodfellow I,Bengio Y,Courville A. Deep Learning . MIT press,2016[5] Xie Z Y,Chen J,Qin M P et al. Phys. Rev. B,2012,86:045139[6] Zhao H H,Xie Z Y,Xiang T et al. Phys. Rev. B,2016,93:125115[7] Levin M,Nave C P. Phys. Rev. Lett.,2007,99:120601[8] Chen Q N,Qin M P,Chen J et al. Phys. Rev. Lett.,2011,107:165701[9] Li Z Q,Yang L P,Xie Z Y et al. Phys. Rev. E,2020,101:060105[10] Akiyama S,Kuramashi Y,Yamashita T et al. Phys. Rev. D,2019,100:054510[11] Yu J F,Xie Z Y,Meurice Y et al. Phys. Rev. E,2014,89:013308[12] Meurice Y. Phys. Rev. B,2013,87:064422;Gu Z C,Wen X G. Phys. Rev. B,2009,80:155131[13] Morita S,Kawashima N. Computer Physics Communications,2019,236:65[14] Denbleyker A,Liu Y Z,Meurice Y et al. Phys. Rev. D,2014,89:016008;Saez A G,Wei T C. Phys. Rev. B,2015,92:125132[15] Wang C,Qin S M,Zhou H J. Phys. Rev. B,2014,90:174201;Yoshiyama K,Hukushima K. J. Phys. Soc. Jpn.,2020,89:104003[16] Ran S J,Tirrito E,Peng C et al. Tensor Network Contractions.Springer Open,2020[17] Verstraete F,Cirac J I. 2004,arXiv:0407066[18] Eisert J,Cramer M,Plenio M B. Rev. Mod. Phys.,2010,82:277[19] Xie Z Y,Chen J,Yu J F et al. Phys. Rev. X,2014,4:011025[20] Vidal G. Phys. Rev. Lett.,2008,101:110501[21] Evenbly G,Vidal G. Phys. Rev. Lett.,2014,112:240502[22] Changlani H J,Kinder J M,Umrigar C J et al. Phys. Rev. B,2009,80:245116[23] Jordan J,Orus R,Vidal G et al. Phys. Rev. Lett.,2008,101:250602[24] Xie Z Y,Jiang H C,Chen Q N et al. Phys. Rev. Lett.,2009,103:160601[25] Wang L,Gu Z C,Verstraete F et al. Phys. Rev. B,2016,94:075143;Liu W Y,Dong S,Wang C et al. Phys. Rev. B,2018,98:241109[26] Corboz P,Mila F. Phys. Rev. B,2013,87:115144[27] Chen X,Gu Z C,Wen X G. Phys. Rev. B,2011,83:035107;Schuch N,Garcia D P,Cirac I. Phys. Rev. B,2011,84:165139[28] Schuch N,Cirac J I,Perez- Garcia D. Ann. Phys.,2010,325:2153;Xu W T,Zhang Q,Zhang G M. Phys. Rev. Lett.,2020,124:130603[29] Haegeman J,Osborne T J,Verstraete F. Phys. Rev. B,2013,88:075133;Vanderstraeten L,Marien M,Verstraete F et al. Phys. Rev. B,2015,92:201111[30] Li W,Ran S J,Gong S S et al. Phys. Rev. Lett.,2011,106:127202;Chen B B,Chen L,Chen Zet al. Phys. Rev. X,2018, 8:031082[31] Yu X,Pekker D,Clark B K. Phys. Rev. Lett., 2017,118:017201[32] Wu Y H,Wang L,Tu H H. Phys. Rev. Lett., 2020,124:246401;Jin H K,Tu H H,Zhou Y. Phys. Rev. B,2020,101:165135[33] Schroder F,Turban D,Musser A J et al. Nat. Commu., 2019,10:1062[34] Jordan J,Orus R,Vidal G. Phys. Rev. B,2009,79:174515[35] Gu Z C,Verstraete F,Wen X G. 2010,arXiv:1004.2563;Gu Z C. Phys. Rev. B,2013,88:115139[36] Kraus C V,Schuch N,Verstraete F et al. Phys. Rev. A,2010,81:052338;Corboz P,Orus R,Bauer B et al. Phys. Rev. B,2010,81:165104[37] Bridgeman J C,Bartlett S D,Doherty A. Phys. Rev. B,2017,96:245122;Ayeni B M. Studies of braided non-Abelian anyons using anyonic tensor networks. PhD thesis, Macquarie University,2017[38] Huang R Z,Liao H J,Liu Z Y et al. Chin. Phys. B,2018,27:070501[39] Xie H D,Huang R Z,Han X J et al. Phys. Rev. B,2018,97:075111[40] Holzner A,Weichselbaum A,McCulloch I P et al. Phys. Rev. B,2011,83:195115;Dargel P E,Wollert A et al. Phys. Rev. B,2012,85:205119[41] Xie Z Y,Liao H J,Huang R Z et al. Phys. Rev. B,2017,96:045128[42] Liao H J,Xie Z Y,Chen J et al. Phys. Rev. Lett.,2017,118:137202[43] Lee C Y,Normand B,Kao Y J. Phys. Rev. B,2018,98:224414;Haghshenas R,Gong S S,Sheng D N. Phys. Rev. B,2019,99:174423[44] Wang L,Pizorn I,Verstraete F. Phys. Rev. B,2011,83:134421;Zhao H H,Ido K,Morita S et al. Phys. Rev. B,2017,96:085103[45] Liu W Y,Dong S J,Han Y J et al. Phys. Rev. B,2017,95:195154;Dong S J,Wang C,Han Y J et al. Phys. Rev. B,2019,99:195153[46] Liu Y Z,Meurice Y,Qin M P et al. Phys. Rev. D,2013,88:056005[47] Meurice Y,Sakai R,Yockey J U. 2020,arXiv:2010.06539[48] Verstraete F,Cirac J I. Phys. Rev. Lett.,2010,104:190405;Tilloy A,Cirac J I. Phys. Rev. X,2019,9:021040;Haghshenas R,Cui Z H,Chan G K L. 2020,arXiv:2008.10566[49] Pan F,Zhou P,Li S et al. Phys. Rev. Lett.,2020,125:060503;Kourtis S,Chamon C,Mucciolo E R et al. SciPost Phys.,2019, 7:060[50] Markov I L,Shi Y. SIAM J. Comput.,2008,38:963[51]Mugel S,Kuchkovsky C,Samuel E S et al. 2020,arXiv:2007.00017[52] Torlai G,Melko R G. Phys. Rev. B,2016,94:165134[53] Carleo G,Troyer M. Science,2017,355:602;Nomura Y,Imada M. 2020,arXiv:2005.14142[54] Torlai G,Melko R G. Phys. Rev. Lett.,2018,120:240503[55] Deng D L,Li X P,Sarma S D. Phys. Rev. B,2017,96:195145[56] Chen J,Cheng S,Xie H D et al. Phys. Rev. B,2018,97:085104[57] Clark S R. J. Phys. A: Math. Theor., 2018,51:135301[58] Deng D L,Li X P,Sarma S D. Phys. Rev. X,2017,7:021021[59] Deng D L. Phys. Rev. Lett., 2018,120:240402[60] Carrasquilla J,Melko R G. Nat. Phys.,2017,13:431;Nieuwenburg E P L,Liu Y H,Huber S D. Nat. Phys.,2017,13:435[61] Wetzel S J. Phys. Rev. E,2017,96:022140[62] Wu D,Wang L,Zhang P. Phys. Rev. Lett.,2019,122:080602[63] Sharir O,Levine Y,Wies N et al. Phys. Rev. Lett.,2020,124:020503[64] Cai Z,Liu J G. Phys. Rev. B,2018,97:035116;Liang X,Liu WY,Lin P Z et al. Phys. Rev. B,2018,98:104426[65] Pfau D,Spencer J S,Matthews A. Phys. Rev. Research,2020,2:033429 ;Hermann J,Schatzle Z,Noe F. Nature Chemistry,2020,12:891[66] Carleo G,Cirac I,Cranmer K et al. Rev. Mod. Phys.,2019,91:045002;Bedolla E,Padierna L C,Preigo R. J. Phys.:Condens. Matter.,2021,33:053001[67] Greitemann J,Liu K,Pollet L. Phys. Rev. B,2019,99:060404;Lidiak A,Gong Z. Phys. Rev. Lett.,2020,125:225701;Wang C,Zhai H. Front. Phys.,2018,13:130507[68] Staev V,Oses C,Kusne A G et al. npj Computational Materials,2018,4:29[69] Novikov A,Trofimov M,Oseledets I. ICLR 2017,arXiv:1605.03795;Stoudenmire E,Schwab D J. Adv. NIPS,2016,29:4799[70] Liu D,Ran S J,Wittek P et al. New J. Phys.,2019,21:073059;Cheng S,Wang L,Zhang P. 2020,arXiv:2009.09932[71] Han Z Y,Wang J,Fan H et al. Phys. Rev. X,2018,8:031012;Cheng S,Wang L,Xiang T et al. Phys. Rev. B,2019,99:155131[72] Gao Z F,Cheng S,He R Q. Phys. Res. Research,2020,2:023300;Sun X,Gao Z F,Lu Z Y et al. TASLP,2020,3030495,arXiv:2010.04950[73] Sun Z Z,Ran S J,Su G. Phys. Rev. E,2020,102:012152[74] Liu J W,Qi Y,Meng Z Y et al. Phys. Rev. B,2017,95:041101;Huang L,Wang L. Phys. Rev. B,2017,95:035105[75] Saremi S,Sejnowski T J. PNAS,2013,110:3071;Beny C. 2013,arXiv:1301.3124[76] Lin H W,Tegmark M,Rolnick D. J. Stat. Phys.,2017,168:1223;Mehta P,Schwab D J. 2014,arXiv:1410.3831;2016,arXiv:1609.0354[77] Janusz M K,Ringel Z. Nat. Phys.,2018,14:578[78] Li S H,Wang L. Phys. Rev. Lett.,2018,121:260601[79] Chen B B,Gao Y,Guo Y B et al. Phys. Rev. B,2020,101:220409[80] Liao H J,Liu J G,Wang L et al. Phys. Rev. X,2019,9:031041[81] Liu J G,Mao L,Zhang P et al. 2019,arXiv:1912.11381[82] Yu S,Gao Y,Chen B B et al. 2020,arXiv:2011.12282[83] Zuo Y,Li B,Zhao Y et al. Optica,2019,6:1132复杂科学最新论文
点击“阅读原文”,追踪复杂科学顶刊论文