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化学进展 2005, Vol. 17 Issue (04): 581-587 前一篇   后一篇

• 综述与评论 •

量子控制论在化学中的应用

董道毅*;陈宗海   

  1. 中国科学技术大学自动化系 合肥 230027
  • 收稿日期:2004-06-01 修回日期:2004-12-01 出版日期:2005-07-24 发布日期:2005-07-24
  • 通讯作者: 董道毅

Applications of Quantum Control Theory in Chemistry

Dong Daoyi*;Chen Zonghai   

  1. Department of Automation, University of Science and Technology of China,Hefie 230027,China
  • Received:2004-06-01 Revised:2004-12-01 Online:2005-07-24 Published:2005-07-24
  • Contact: Dong Daoyi
控制量子现象是化学研究中的一个重要目标,量子控制论对实现该目标具有积极的指导意义.本文综述了量子控制论在化学中的应用及其进展,重点分析了量子相干控制、量子优化控制、闭环学习控制和能控性观念在化学研究中的应用,介绍了它们的研究现状,并对其未来研究进行了展望.
Controlling quantum phenomena is an important goal in chemistry, and quantum control theory is helpful to realize the goal. The applications of quantum control theory in chemistry and their progress have been reviewed in this paper. The applications of quantum coherent control, quantum optimal control, closed-loop learning control and the concept of controllability to chemistry research have mainly been analyzed, the current research state has been introduced and the trend of research has also been proposed.

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[ 1 ] Doherty A C , Habib S , Jacobs K, et al . Phys. Rev. A , 2000 ,62 : 012105
[ 2 ] Doherty A C , Habib S , Jungman G. Phys. Rev. A , 2001 , 63 :062306
[ 3 ] Lloyd S. Phys. Rev. A , 2000 , 62 : 022108
[ 4 ] Yanagisawa M, Kimra H. IEEE Trans. Automat . Contr. , 2003 ,48(12) : 2107 —2120
[ 5 ] Yanagisawa M, Kimra H. IEEE Trans. Automat . Contr. , 2003 ,48(12) : 2121 —2132
[ 6 ] Rosenbrock H H. IEEE Trans. Automat . Contr. , 2000 , 45 :73 —77
[ 7 ] Solomon A I , Schrirmer S G. International Journal of Modern Physics B , 2002 , 16 : 2107 —2112
[ 8 ] Tarn T J , Huang G, Clark J W. Journal of Mathematical Modelling , 1980 , 1 : 109 —121
[ 9 ] Huang G M, Tarn T J , Clark J W. J . Math. Phys. , 1983 , 24(11) : 2608 —2618
[10] Ong C K, Huang G M, Tarn T J , et al . Mathematical Systems Theory , 1984 , 17 : 335 —350
[11] Clark J W, Ong C K, Tarn T J , et al . Mathematical Systems Theory , 1985 , 18 : 33 —35
[12] Lin E B. Contemporary Mathematics , 1989 , 97 : 269 —278
[13] Scully M O , Zhu S Y. Science , 1998 , 281 : 1973 —1974
[14] Warren W S , Rabitz H , Dahleh M. Science , 1993 , 259 : 1581 —1589
[15] D′Alessandro D. IEEE Trans. Automat . Contr. , 2002 , 47 : 87 —91
[16] D′Alessandro D , Dahleh M. IEEE Trans. Automat . Contr. ,2001 , 46 : 866 —876
[17] Wu R B , Li C W, Wang Y Z. Physics Letters A , 2002 , 295 :20 —24
[18] Ramakrishna V , Salapaka M V , Dahleh M, et al . Phys. Rev. A ,1995 , 51 : 960 —966
[19] Albertini F , D′Alessandro D. IEEE Trans. Automat . Contr. ,2003 , 48(8) : 1399 —1403
[20] Turinici G, Rabitz H. Chemical Physics , 2001 , 267 : 1 —9
[21] Schirmer S G, Solomon A I , Leahy J V. J . Phys. A: Math.Gen. , 2002 , 35 : 4125 —4141
[22] Fu H , Schirmer S G, Solomon A I. J . Phys. A: Math. Gen. ,2001 , 34 : 1679 —1690
[23] Schirmer S G, Fu H , Solomon A I. Phys. Rev. A , 2001 , 63 :063410
[24] Chu S. Nature , 2002 , 416 : 206 —210
[25] Monroe C. Nature , 2002 , 416 : 238 —246
[26] Rabitz H , de Vivie-Riedle R , Motzkus M, et al . Science , 2000 ,288 : 824 —828
[27] Krause J L , Messina M, Wilson K R , et al . J . Phys. Chem. ,1995 , 99 : 13736 —13747
[28] Messina M, Wilson K R. Chemical Physics Letters , 1995 , 241 :502 —510
[29] Che J W, Messina M, Wilson K R , et al . J . Phys. Chem. ,1996 , 100 : 7873 —7883
[30] Messina M, Wilson K R , Krause J L. J . Chem. Phys. , 1996 ,104(1) : 173 —182
[31] Bardeen C J , Che J W, Wilson K R , et al . J . Phys. Chem. A ,1997 , 101 : 3815 —3822
[32] Bardeen C J , Che J W, Wilson K R , et al . J . Chem. Phys. ,1997 , 106 (20) : 8486 —8503
[33] Cao J S , Messina M, Wilson K R. J . Chem. Phys. , 1997 , 106(12) : 5239 —5248
[34] Cao J S , Wilson K R. J . Chem. Phys. , 1997 , 107(5) : 1441 —1450
[35] Bardeen C J , Yakovlev V V , Squier J A , et al . J . Am. Chem.Soc. , 1998 , 120 : 13023 —13027
[36] Brown F L H , Silbey R J . Chemical Physics Letters , 1998 , 292 :357 —368
[37] Assion A , Baumert T , Bergt M, et al . Science , 1998 , 282 :919 —922
[38] Mishima K, Yamashita K. Journal of Molecular Structure (Theochem) , 1999 , 461P462 : 483 —491
[39] Mishima K, Yamashita K. Journal of Chemical Physics , 1999 ,110(16) : 7756 —7769
[40] Watanabe T , Umeda H , Fujimura Y, et al . Journal of Molecular Structure (Theochem) , 1999 , 461P462 : 317 —324
[41] Hoki K, Ohtsuki Y, Kono H , et al . J . Phys. Chem. A , 1999 ,103 : 6301 —6308
[42] Guiang C S , Wyatt R E. Journal of Chemical Physics , 2000 , 112(8) : 3580 —3591
[43] Umeda H , Fujimura Y. Journal of Chemical Physics , 2000 , 113(9) : 3510 —3518
[44] Shuford K L , Krause J L. International Journal of Quantum Chemistry , 2000 , 77 : 393 —402
[45] Zadoyan R , Kohen D , Lidar D A , Aplarian V A. Chemical Physics , 2001 , 266 : 323 —351
[46] Umeda H , Fujumura Y C. Chemical Physics , 2001 , 274 : 231 —241
[47] Hoki K, González L , Fujimura Y. Journal of Chemical Physics ,2002 , 116 (20) : 8799 —8802
[48] Nakagami K, Ohtsuki Y, Fujimura Y. Chemical Physics Letters ,2002 , 360 : 91 —98
[49] Umeda H , Takagi M, Yamada S , et al . J . Am. Chem. Soc. ,2002 , 124 : 9265 —9271
[50] Ohmura H , Nakanaga T. Journal of Photochemistry and Photobiology A: Chemistry , 2003 , 158 : 69 —76
[51] Sukharev M, Charron E , Suzor-Weiner A. Phys. Rev. A , 2002 ,66 : 053407
[52] Shapiro E A , Khavkine I , Spanner M, et al . Phys. Rev. A ,2003 , 67 : 013406
[53] Murai H. Journal of Photochemistry and Photobiology C , 2003 , 3 :183 —201
[54] Fujisaki H , Teranishi Y, Kondorskiy A , et al . quant-ph/0302025 , 2003
[55] Peirce A P , Dahleh M, Rabitz H. Phys. Rev. A , 1988 , 37(12) : 4950 —4964
[56] Dahleh M, Peirce A P , Rabitz H. Phys. Rev. A , 1990 , 42(3) :1065 —1079
[57] Judson R S , Rabitz H. Phys. Rev. Lett . , 1992 , 68 ( 10) :1500 —1503
[58] Geremia J M, Rabitz H. Phys. Rev. Lett . , 2002 , 89 (26) :263902
[59] Gordon R J , Zhu L C , Seideman T. Acc. Chem. Res. , 1999 ,32 : 1007 —1016
[60] 晓鸣(Xiao M) , 庄琪(Zhuang Q) , 戈央( Ge Y) . 科学通报(Chinese Science Bulletin) , 1999 , 44(19) : 2017
[61] Wilson E K. Chemical & Engineering News , 2001 , 79 (22) :38 —39
[62] Weinacht T C , Bucksbaum P H. J . Opt . B : Quantum Semiclass.Opt . , 2002 , 4 : R35 —R52
[63] 孔繁敖( Kong F A) . 化学物理学报( Chinese Journal of Chemical Physics) , 2002 , 15(3) : 166 —168
[64] Zhu L C , Kleiman V , Li X N , et al . Science , 1995 , 270 : 77 —80
[65] Kohler B , Yakovlev V V , Che J W, et al . Phys. Rev. Lett . ,1995 , 74(17) : 3360 —3363
[66] Shnitman A , Sofer I , Golub I , et al . Phys. Rev. Lett . , 1996 ,76(16) : 2886 —2889
[67] Meshulach D , Silberberg Y. Nature , 1998 , 396 : 239 —242
[68] Meshulach D , Silberberg Y. Phys. Rev. A , 1999 , 60 ( 2 ) :1287 —1292
[69] Pastirk I , Brown E J , Zhang Q G, et al . Journal of Chemical Physics , 1998 , 108 (11) : 4375 —4378
[70] Cao J S. Journal of Luminescence , 2000 , 87/89 : 30 —34
[71] Gruebele M. Chemical Physics , 2001 , 267 : 33 —46
[72] Gruebele M. Chemical Physics , 2002 , 276 : 333 —333
[73] Herek J L , Wohlleben W, Cogdell R J , et al . Nature , 2002 ,417 : 533 —535
[74] Ohtsuki Y, Kono H , Fujimura Y. J . Chem. Phys. , 1998 , 109(21) : 9318 —9331
[75] Ohtsuki Y, Ohara K, Abe M, et al . Chemical Physics Letters ,2003 , 369 : 525 —533
[76] Ohtsuki Y, Nakagami K, Zhu W S , et al . Chemical Physics ,2003 , 287 : 197 —216
[77] Manz J , Sundermann K, de Vivie-Riedle R. Chemical Physics Letters , 1998 , 290 : 415 —422
[78] Hoki K, Fujimura Y. Chemical Physics , 2001 , 267 : 187 —193
[79] Tesch C M, Kurtz L , de Vivie-Riedle R. Chemical PhysicsLetters , 2001 , 343 : 633 —641
[80] Doherty A , Doyle J , Mabuchi H , et al . Proceedings of the 39th IEEE Conference on Decision and Control . Sydney , 2000. 949 —954
[81] Rabitz H. Proceedings of the 39th IEEE Conference on Decision and Control . Sydney , 2000. 937 —942
[82] Levis R J , Rabitz H. J . Phys. Chem. A , 2002 , 106 ( 27) :6427 —6444
[83] Bardeen C J , Yakovlev V V , Wilson K R , et al . Chemical Physics Letters , 1997 , 280 : 151 —158
[84] Brixner T , Kiefer B , Gerber G. Chemical Physics , 2001 , 267 :241 —246
[85] Brixner T , Damrauer N H , Niklaus P , et al . Nature , 2001 , 414 :57 —60
[86] Brixner T , Damrauer N H , Kiefer B , et al . Journal of Chemical Physics , 2003 , 118 (8) : 3692 —3701
[87] Geremia J M, Zhu W S , Rabitz H. Journal of Chemical Physics ,2000 , 113 (24) : 10841 —10848
[88] Levis R J , Menkir G M, Rabitz H. Science , 2001 , 292 : 709 —713
[89] Biteen J S , Geremia J M, Rabitz H. Chemical Physics Letters ,2001 , 348 : 440 —446
[90] Geremia J M, Weiss E , Rabitz H. Chemical Physics , 2001 , 267 :209 —222
[91] Biteen J S , Geremia J M, Rabitz H. Chemical Physics , 2003 ,290 : 35 —45
[92] Wiseman H M, Milburn G. J . Phys. Rev. Lett . , 1993 , 70(5) :548 —551
[93] Doherty A C , Jacobs K. Phys. Rev. A , 1999 , 60 : 2700 —2711
[94] Giovannetti V , Tombesi P , Vitali D. Phys. Rev. A , 1999 , 60(2) : 1549 —1561
[95] Nelson R J , Weinstein Y, Cory D , et al . Phys. Rev. Lett . ,2000 , 85 : 3045 —3048
[96] Wang J , Wiseman H M. Phys. Rev. A , 2001 , 64 : 063810
[97] Wang J , Wiseman H M, Milburn G J . Chemical Physics , 2001 ,268 : 221 —235
[98] Wiseman H M. Modern Physics Letters B , 1995 , 9 : 629 —654
[99] Rice S A. Nature , 2001 , 409 : 422 —426

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摘要

量子控制论在化学中的应用