Articoli di riviste sul tema "Many-body methods"
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Schäfer, T., C. W. Kao e S. R. Cotanch. "Many body methods and effective field theory". Nuclear Physics A 762, n. 1-2 (novembre 2005): 82–101. http://dx.doi.org/10.1016/j.nuclphysa.2005.08.006.
Testo completoStewart, I. "Symmetry methods in collisionless many-body problems". Journal of Nonlinear Science 6, n. 6 (novembre 1996): 543–63. http://dx.doi.org/10.1007/bf02434056.
Testo completoCARDY, JOHN. "EXACT RESULTS FOR MANY-BODY PROBLEMS USING FEW-BODY METHODS". International Journal of Modern Physics B 20, n. 19 (30 luglio 2006): 2595–602. http://dx.doi.org/10.1142/s0217979206035072.
Testo completoKaldor, Uzi. "Multireference many-body methods. Perspective on "Linked-cluster expansions for the nuclear many-body problem"". Theoretical Chemistry Accounts: Theory, Computation, and Modeling (Theoretica Chimica Acta) 103, n. 3-4 (9 febbraio 2000): 276–77. http://dx.doi.org/10.1007/s002149900014.
Testo completoViviani, M. "Few- and many-body methods in nuclear physics". European Physical Journal A 31, n. 4 (marzo 2007): 429–34. http://dx.doi.org/10.1140/epja/i2006-10263-9.
Testo completoDrut, Joaquín E., e Amy N. Nicholson. "Lattice methods for strongly interacting many-body systems". Journal of Physics G: Nuclear and Particle Physics 40, n. 4 (12 marzo 2013): 043101. http://dx.doi.org/10.1088/0954-3899/40/4/043101.
Testo completoPulay, P., e S. Sæbø. "Variational CEPA: Comparison with different many-body methods". Chemical Physics Letters 117, n. 1 (maggio 1985): 37–41. http://dx.doi.org/10.1016/0009-2614(85)80400-0.
Testo completoNieves, J. "Quantum field theoretical methods in many body systems". Czechoslovak Journal of Physics 46, n. 7-8 (luglio 1996): 673–720. http://dx.doi.org/10.1007/bf01692562.
Testo completoLewin, Mathieu. "Geometric methods for nonlinear many-body quantum systems". Journal of Functional Analysis 260, n. 12 (giugno 2011): 3535–95. http://dx.doi.org/10.1016/j.jfa.2010.11.017.
Testo completoGutfreund, H. "Applications of many body methods to large molecules". Journal of Polymer Science Part C: Polymer Symposia 29, n. 1 (7 marzo 2007): 95–108. http://dx.doi.org/10.1002/polc.5070290113.
Testo completoSapirstein, J. "Theoretical methods for the relativistic atomic many-body problem". Reviews of Modern Physics 70, n. 1 (1 gennaio 1998): 55–76. http://dx.doi.org/10.1103/revmodphys.70.55.
Testo completoAnghel, Dragos Victor, Doru Sabin Delion e Gheorghe Sorin Paraoanu. "Advanced many-body and statistical methods in mesoscopic systems". Journal of Physics: Conference Series 338 (27 febbraio 2012): 011001. http://dx.doi.org/10.1088/1742-6596/338/1/011001.
Testo completoTheodossiades, S., M. Teodorescu e H. Rahnejat. "From multi-body to many-body dynamics". Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 223, n. 12 (21 ottobre 2009): 2835–47. http://dx.doi.org/10.1243/09544062jmes1688.
Testo completoDoran, Alexander E., e So Hirata. "Convergence acceleration of Monte Carlo many-body perturbation methods by using many control variates". Journal of Chemical Physics 153, n. 9 (7 settembre 2020): 094108. http://dx.doi.org/10.1063/5.0020584.
Testo completoBotti, Silvana, David Kammerlander e Miguel A. L. Marques. "Band structures of Cu2ZnSnS4 and Cu2ZnSnSe4 from many-body methods". Applied Physics Letters 98, n. 24 (13 giugno 2011): 241915. http://dx.doi.org/10.1063/1.3600060.
Testo completoSekino, Hideo, e Rodney J. Bartlett. "Nuclear spin–spin coupling constants evaluated using many body methods". Journal of Chemical Physics 85, n. 7 (ottobre 1986): 3945–49. http://dx.doi.org/10.1063/1.450916.
Testo completoSalter, E. A., Gary W. Trucks e Rodney J. Bartlett. "Analytic energy derivatives in many‐body methods. I. First derivatives". Journal of Chemical Physics 90, n. 3 (febbraio 1989): 1752–66. http://dx.doi.org/10.1063/1.456069.
Testo completoSalter, E. A., e Rodney J. Bartlett. "Analytic energy derivatives in many‐body methods. II. Second derivatives". Journal of Chemical Physics 90, n. 3 (febbraio 1989): 1767–73. http://dx.doi.org/10.1063/1.456070.
Testo completoQuiroz, D. A. Amor, P. O. Hess, O. Civitarese e T. Yépez-Martínez. "QCD at low energy: The use of many-body methods". Journal of Physics: Conference Series 639 (14 settembre 2015): 012014. http://dx.doi.org/10.1088/1742-6596/639/1/012014.
Testo completoCole, Samuel J., George D. Purvis e Rodney J. Bartlett. "Singlet-triplet energy gap in methylene using many-body methods". Chemical Physics Letters 113, n. 3 (gennaio 1985): 271–74. http://dx.doi.org/10.1016/0009-2614(85)80257-8.
Testo completoSolovyev, I. V. "Combining DFT and many-body methods to understand correlated materials". Journal of Physics: Condensed Matter 20, n. 29 (26 giugno 2008): 293201. http://dx.doi.org/10.1088/0953-8984/20/29/293201.
Testo completoSekino, Hideo, e Rodney J. Bartlett. "Spin density of radicals by finite field many‐body methods". Journal of Chemical Physics 82, n. 9 (maggio 1985): 4225–29. http://dx.doi.org/10.1063/1.448837.
Testo completoPausch, R., M. Thies e V. L. Dolman. "Solving the Gross-Neveu model with relativistic many-body methods". Zeitschrift f�r Physik A Hadrons and Nuclei 338, n. 4 (dicembre 1991): 441–53. http://dx.doi.org/10.1007/bf01295773.
Testo completoParra-Murillo, Carlos A., Javier Madroñero e Sandro Wimberger. "Exact numerical methods for a many-body Wannier–Stark system". Computer Physics Communications 186 (gennaio 2015): 19–30. http://dx.doi.org/10.1016/j.cpc.2014.09.008.
Testo completoZakrzewski, Vyacheslav G., e Wolfgang von Niessen. "Vectorizable algorithm for green function and many-body perturbation methods". Journal of Computational Chemistry 14, n. 1 (gennaio 1993): 13–18. http://dx.doi.org/10.1002/jcc.540140105.
Testo completoKeiter, H., e S. Kilić. "Brillouin-Wigner and Feenberg perturbation methods in many-body theory". Annalen der Physik 508, n. 7 (31 agosto 2010): 608–24. http://dx.doi.org/10.1002/andp.2065080705.
Testo completoSong, Jinlin, Qiang Cheng, Bo Zhang, Lu Lu, Xinping Zhou, Zixue Luo e Run Hu. "Many-body near-field radiative heat transfer: methods, functionalities and applications". Reports on Progress in Physics 84, n. 3 (1 marzo 2021): 036501. http://dx.doi.org/10.1088/1361-6633/abe52b.
Testo completoVekić, M., e S. R. White. "Determinantal and worldline quantum Monte Carlo methods for many-body systems". Physical Review B 47, n. 24 (15 giugno 1993): 16131–40. http://dx.doi.org/10.1103/physrevb.47.16131.
Testo completoHirata, So, e Kiyoshi Yagi. "Predictive electronic and vibrational many-body methods for molecules and macromolecules". Chemical Physics Letters 464, n. 4-6 (ottobre 2008): 123–34. http://dx.doi.org/10.1016/j.cplett.2008.07.087.
Testo completoZhang, Juncheng Harry, Timothy C. Ricard, Cody Haycraft e Srinivasan S. Iyengar. "Weighted-Graph-Theoretic Methods for Many-Body Corrections within ONIOM: Smooth AIMD and the Role of High-Order Many-Body Terms". Journal of Chemical Theory and Computation 17, n. 5 (23 aprile 2021): 2672–90. http://dx.doi.org/10.1021/acs.jctc.0c01287.
Testo completoKUO, T. T. S., e YIHARN TZENG. "AN INTRODUCTORY GUIDE TO GREEN’S FUNCTION METHODS IN NUCLEAR MANY-BODY PROBLEMS". International Journal of Modern Physics E 03, n. 02 (giugno 1994): 523–89. http://dx.doi.org/10.1142/s0218301394000140.
Testo completoJaschke, Daniel, Simone Montangero e Lincoln D. Carr. "One-dimensional many-body entangled open quantum systems with tensor network methods". Quantum Science and Technology 4, n. 1 (6 novembre 2018): 013001. http://dx.doi.org/10.1088/2058-9565/aae724.
Testo completoBischoff, Florian A. "Regularizing the molecular potential in electronic structure calculations. II. Many-body methods". Journal of Chemical Physics 141, n. 18 (14 novembre 2014): 184106. http://dx.doi.org/10.1063/1.4901022.
Testo completoProkopenya, A. N. "Hamiltonian normalization in the restricted many-body problem by computer algebra methods". Programming and Computer Software 38, n. 3 (25 maggio 2012): 156–66. http://dx.doi.org/10.1134/s0361768812030048.
Testo completoNg, Betty, e D. J. Newman. "Many‐body crystal field calculations. I. Methods of computation and perturbation expansion". Journal of Chemical Physics 87, n. 12 (15 dicembre 1987): 7096–109. http://dx.doi.org/10.1063/1.453354.
Testo completoDoran, Alexander E., e So Hirata. "Convergence acceleration of Monte Carlo many-body perturbation methods by direct sampling". Journal of Chemical Physics 153, n. 10 (14 settembre 2020): 104112. http://dx.doi.org/10.1063/5.0020583.
Testo completoSun, Jun-Qiang, e Rodney J. Bartlett. "Convergence of many-body perturbation methods with lattice summations in extended systems". Journal of Chemical Physics 106, n. 13 (aprile 1997): 5554–63. http://dx.doi.org/10.1063/1.473577.
Testo completoDinerman, Julie, e Lea F. Santos. "Manipulation of the dynamics of many-body systems via quantum control methods". New Journal of Physics 12, n. 5 (28 maggio 2010): 055025. http://dx.doi.org/10.1088/1367-2630/12/5/055025.
Testo completoLevin, F. S. "Many-body scattering tehory methods as a basis for moelcular structure calculations". International Journal of Quantum Chemistry 14, S12 (18 giugno 2009): 109–30. http://dx.doi.org/10.1002/qua.560140810.
Testo completoLarder, B., D. O. Gericke, S. Richardson, P. Mabey, T. G. White e G. Gregori. "Fast nonadiabatic dynamics of many-body quantum systems". Science Advances 5, n. 11 (novembre 2019): eaaw1634. http://dx.doi.org/10.1126/sciadv.aaw1634.
Testo completoFURNSTAHL, R. J. "RECENT DEVELOPMENTS IN THE NUCLEAR MANY-BODY PROBLEM". International Journal of Modern Physics B 17, n. 28 (10 novembre 2003): 5111–26. http://dx.doi.org/10.1142/s0217979203020247.
Testo completoWu, Dian, Riccardo Rossi, Filippo Vicentini, Nikita Astrakhantsev, Federico Becca, Xiaodong Cao, Juan Carrasquilla et al. "Variational benchmarks for quantum many-body problems". Science 386, n. 6719 (18 ottobre 2024): 296–301. http://dx.doi.org/10.1126/science.adg9774.
Testo completoPANDHARIPANDE, V. R. "RECENT DEVELOPMENTS IN THE NUCLEAR MANY-BODY PROBLEM". International Journal of Modern Physics B 13, n. 05n06 (10 marzo 1999): 543–58. http://dx.doi.org/10.1142/s0217979299000448.
Testo completoCiardi, Matteo, Tommaso Macrì e Fabio Cinti. "Zonal Estimators for Quasiperiodic Bosonic Many-Body Phases". Entropy 24, n. 2 (12 febbraio 2022): 265. http://dx.doi.org/10.3390/e24020265.
Testo completoFajen, O. Jonathan, e Kurt R. Brorsen. "Multicomponent MP4 and the inclusion of triple excitations in multicomponent many-body methods". Journal of Chemical Physics 155, n. 23 (21 dicembre 2021): 234108. http://dx.doi.org/10.1063/5.0071423.
Testo completoAmor-Quiroz, D. A., T. Yépez-Martínez, P. O. Hess, O. Civitarese e A. Weber. "Low-energy meson spectrum from a QCD approach based on many-body methods". International Journal of Modern Physics E 26, n. 12 (dicembre 2017): 1750082. http://dx.doi.org/10.1142/s0218301317500823.
Testo completoBrandenburg, Jan Gerit, Andrea Zen, Martin Fitzner, Benjamin Ramberger, Georg Kresse, Theodoros Tsatsoulis, Andreas Grüneis, Angelos Michaelides e Dario Alfè. "Physisorption of Water on Graphene: Subchemical Accuracy from Many-Body Electronic Structure Methods". Journal of Physical Chemistry Letters 10, n. 3 (7 gennaio 2019): 358–68. http://dx.doi.org/10.1021/acs.jpclett.8b03679.
Testo completoFedorov, Dmitri G., Naoya Asada, Isao Nakanishi e Kazuo Kitaura. "The Use of Many-Body Expansions and Geometry Optimizations in Fragment-Based Methods". Accounts of Chemical Research 47, n. 9 (21 agosto 2014): 2846–56. http://dx.doi.org/10.1021/ar500224r.
Testo completoHartono, Albert, Qingda Lu, Thomas Henretty, Sriram Krishnamoorthy, Huaijian Zhang, Gerald Baumgartner, David E. Bernholdt et al. "Performance Optimization of Tensor Contraction Expressions for Many-Body Methods in Quantum Chemistry†". Journal of Physical Chemistry A 113, n. 45 (12 novembre 2009): 12715–23. http://dx.doi.org/10.1021/jp9051215.
Testo completoAuer, Alexander A., Gerald Baumgartner, David E. Bernholdt, Alina Bibireata, Venkatesh Choppella, Daniel Cociorva, Xiaoyang Gao et al. "Automatic code generation for many-body electronic structure methods: the tensor contraction engine‡‡". Molecular Physics 104, n. 2 (20 gennaio 2006): 211–28. http://dx.doi.org/10.1080/00268970500275780.
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