Many-body theory of positron binding to polyatomic molecules

被引:41
作者
Hofierka, Jaroslav [1 ]
Cunningham, Brian [1 ]
Rawlins, Charlie M. [1 ]
Patterson, Charles H. [2 ]
Green, Dermot G. [1 ]
机构
[1] Queens Univ Belfast, Sch Math & Phys, Belfast, Antrim, North Ireland
[2] Trinity Coll Dublin, Sch Phys, Dublin, Ireland
基金
欧洲研究理事会;
关键词
CONSERVING APPROXIMATIONS; ELECTRON-SYSTEMS; GREENS-FUNCTION; ANNIHILATION; SCATTERING; ATTACHMENT; INTEGRALS; STATES; ATOMS;
D O I
10.1038/s41586-022-04703-3
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Positron binding to molecules is key to extremely enhanced positron annihilation and positron-based molecular spectroscopy(1). Although positron binding energies have been measured for about 90 polyatomic molecules(1-6), an accurate ab initio theoretical description of positron-molecule binding has remained elusive. Of the molecules studied experimentally, ab initio calculations exist for only six; these calculations agree with experiments on polar molecules to at best 25 per cent accuracy and fail to predict binding in nonpolar molecules. The theoretical challenge stems from the need to accurately describe the strong many-body correlations including polarization of the electron cloud, screening of the electron-positron Coulomb interaction and the unique process of virtual-positronium formation (in which a molecular electron temporarily tunnels to the positron)(1). Here we develop a many-body theory of positron-molecule interactions that achieves excellent agreement with experiment (to within 1 per cent in cases) and predicts binding in formamide and nucleobases. Our framework quantitatively captures the role of many-body correlations and shows their crucial effect on enhancing binding in polar molecules, enabling binding in nonpolar molecules, and increasing annihilation rates by 2 to 3 orders of magnitude. Our many-body approach can be extended to positron scattering and annihilation.-ray spectra in molecules and condensed matter, to provide the fundamental insight and predictive capability required to improve materials science diagnostics(7,8), develop antimatter-based technologies (including positron traps, beams and positron emission tomography)(8-10), and understand positrons in the Galaxy(11).
引用
收藏
页码:688 / +
页数:19
相关论文
共 86 条
[1]   ELASTIC-SCATTERING OF SLOW POSITRONS BY HELIUM [J].
AMUSIA, MY ;
CHEREPKOV, NA ;
CHERNYSHEVA, LV ;
SHAPIRO, SG .
JOURNAL OF PHYSICS B-ATOMIC MOLECULAR AND OPTICAL PHYSICS, 1976, 9 (17) :L531-L534
[2]   Trapped antihydrogen [J].
Andresen, G. B. ;
Ashkezari, M. D. ;
Baquero-Ruiz, M. ;
Bertsche, W. ;
Bowe, P. D. ;
Butler, E. ;
Cesar, C. L. ;
Chapman, S. ;
Charlton, M. ;
Deller, A. ;
Eriksson, S. ;
Fajans, J. ;
Friesen, T. ;
Fujiwara, M. C. ;
Gill, D. R. ;
Gutierrez, A. ;
Hangst, J. S. ;
Hardy, W. N. ;
Hayden, M. E. ;
Humphries, A. J. ;
Hydomako, R. ;
Jenkins, M. J. ;
Jonsell, S. ;
Jorgensen, L. V. ;
Kurchaninov, L. ;
Madsen, N. ;
Menary, S. ;
Nolan, P. ;
Olchanski, K. ;
Olin, A. ;
Povilus, A. ;
Pusa, P. ;
Robicheaux, F. ;
Sarid, E. ;
el Nasr, S. Seif ;
Silveira, D. M. ;
So, C. ;
Storey, J. W. ;
Thompson, R. I. ;
van der Werf, D. P. ;
Wurtele, J. S. ;
Yamazaki, Y. .
NATURE, 2010, 468 (7324) :673-U1
[3]  
[Anonymous], 2016, INTERACTING ELECT
[4]   Self-consistent molecular Hartree-Fock-Slater calculations - I. The computational procedure [J].
Baerends, E. J. ;
Ellis, D. E. ;
Ros, P. .
CHEMICAL PHYSICS, 1973, 2 (01) :41-51
[5]   Laser cooling of antihydrogen atoms [J].
Baker, C. J. ;
Bertsche, W. ;
Capra, A. ;
Carruth, C. ;
Cesar, C. L. ;
Charlton, M. ;
Christensen, A. ;
Collister, R. ;
Mathad, A. Cridland ;
Eriksson, S. ;
Evans, A. ;
Evetts, N. ;
Fajans, J. ;
Friesen, T. ;
Fujiwara, M. C. ;
Gill, D. R. ;
Grandemange, P. ;
Granum, P. ;
Hangst, J. S. ;
Hardy, W. N. ;
Hayden, M. E. ;
Hodgkinson, D. ;
Hunter, E. ;
Isaac, C. A. ;
Johnson, M. A. ;
Jones, J. M. ;
Jones, S. A. ;
Jonsell, S. ;
Khramov, A. ;
Knapp, P. ;
Kurchaninov, L. ;
Madsen, N. ;
Maxwell, D. ;
McKenna, J. T. K. ;
Menary, S. ;
Michan, J. M. ;
Momose, T. ;
Mullan, P. S. ;
Munich, J. J. ;
Olchanski, K. ;
Olin, A. ;
Peszka, J. ;
Powell, A. ;
Pusa, P. ;
Rasmussen, C. O. ;
Robicheaux, F. ;
Sacramento, R. L. ;
Sameed, M. ;
Sarid, E. ;
Silveira, D. M. .
NATURE, 2021, 592 (7852) :35-+
[6]   Coupled-cluster theory in quantum chemistry [J].
Bartlett, Rodney J. ;
Musial, Monika .
REVIEWS OF MODERN PHYSICS, 2007, 79 (01) :291-352
[7]   CONSERVING APPROXIMATIONS FOR STRONGLY FLUCTUATING ELECTRON-SYSTEMS .1. FORMALISM AND CALCULATIONAL APPROACH [J].
BICKERS, NE ;
SCALAPINO, DJ .
ANNALS OF PHYSICS, 1989, 193 (01) :206-251
[8]   CONSERVING APPROXIMATIONS FOR STRONGLY CORRELATED ELECTRON-SYSTEMS - BETHE-SALPETER-EQUATION AND DYNAMICS FOR THE TWO-DIMENSIONAL HUBBARD-MODEL [J].
BICKERS, NE ;
SCALAPINO, DJ ;
WHITE, SR .
PHYSICAL REVIEW LETTERS, 1989, 62 (08) :961-964
[9]  
Boyle J., 1998, MANY BODY ATOMIC PHY, DOI [DOI 10.1017/CBO9780511470790, 10.1017/CBO9780511470790]
[10]   Dynamical Green's function and an exact optical potential for electron-molecule scattering including nuclear dynamics [J].
Brand, J ;
Cederbaum, LS ;
Meyer, HD .
PHYSICAL REVIEW A, 1999, 60 (04) :2983-2999