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[해외논문] Cooperation between Excitation Energy Transfer and Antisynchronously Coupled Vibrations

The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, v.125 no.21, 2021년, pp.5601 - 5610  

Cho, Kwang Hyun (Department of Chemistry , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Korea) ,  Rhee, Young Min

Abstract AI-Helper 아이콘AI-Helper

The effects of the environment in energy transfer systems have been continuously studied for decades. Here, we investigate how the energy transfer and the emergence of vibrational correlations cooperate with each other based on simulations with a few numerically approximate mixed quantum classical (...

참고문헌 (55)

  1. Bennett, Doran I. G., Malý, Pavel, Kreisbeck, Christoph, van Grondelle, Rienk, Aspuru-Guzik, Alán. Mechanistic Regimes of Vibronic Transport in a Heterodimer and the Design Principle of Incoherent Vibronic Transport in Phycobiliproteins. The journal of physical chemistry letters, vol.9, no.10, 2665-2670.

  2. Halpin, Alexei, Johnson, Philip J. M., Tempelaar, Roel, Murphy, R. Scott, Knoester, Jasper, Jansen, Thomas L. C., Miller, R. J. Dwayne. Two-dimensional spectroscopy of a molecular dimer unveils the effects of vibronic coupling on exciton coherences. Nature chemistry, vol.6, no.3, 196-201.

  3. Shenai, Prathamesh M., Fernandez-Alberti, Sebastian, Bricker, William P., Tretiak, Sergei, Zhao, Yang. Internal Conversion and Vibrational Energy Redistribution in Chlorophyll A. The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, vol.120, no.1, 49-58.

  4. Tong, Ashley L., Fiebig, Olivia C., Nairat, Muath, Harris, Dvir, Giansily, Marcel, Chenu, Aurélia, Sturgis, James N., Schlau-Cohen, Gabriela S.. Comparison of the Energy-Transfer Rates in Structural and Spectral Variants of the B800-850 Complex from Purple Bacteria. The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, vol.124, no.8, 1460-1469.

  5. Bose, Amartya, Makri, Nancy. All-Mode Quantum-Classical Path Integral Simulation of Bacteriochlorophyll Dimer Exciton-Vibration Dynamics. The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, vol.124, no.24, 5028-5038.

  6. Freixas, V. M., Tretiak, S., Makhov, D. V., Shalashilin, D. V., Fernandez-Alberti, S.. Vibronic Quantum Beating between Electronic Excited States in a Heterodimer. The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, vol.124, no.19, 3992-4001.

  7. Kim, Chang Woo, Lee, Weon-Gyu, Kim, Inkoo, Rhee, Young Min. Effect of Underdamped Vibration on Excitation Energy Transfer: Direct Comparison between Two Different Partitioning Schemes. The journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment & general theory, vol.123, no.6, 1186-1197.

  8. Rancova, Olga, Abramavicius, Darius. Static and Dynamic Disorder in Bacterial Light-Harvesting Complex LH2: A 2DES Simulation Study. The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, vol.118, no.27, 7533-7540.

  9. Dean, Jacob C., Mirkovic, Tihana, Toa, Zi S.D., Oblinsky, Daniel G., Scholes, Gregory D.. Vibronic Enhancement of Algae Light Harvesting. Chem, vol.1, no.6, 858-872.

  10. Rolczynski, Brian S., Zheng, Haibin, Singh, Ved P., Navotnaya, Polina, Ginzburg, Alan R., Caram, Justin R., Ashraf, Khuram, Gardiner, Alastair T., Yeh, Shu-Hao, Kais, Sabre, Cogdell, Richard J., Engel, Gregory S.. Correlated Protein Environments Drive Quantum Coherence Lifetimes in Photosynthetic Pigment-Protein Complexes. Chem, vol.4, no.1, 138-149.

  11. Chin, A. W., Prior, J., Rosenbach, R., Caycedo-Soler, F., Huelga, S. F., Plenio, M. B.. The role of non-equilibrium vibrational structures in electronic coherence and recoherence in pigment-protein complexes. Nature physics, vol.9, no.2, 113-118.

  12. Ma, Fei, Romero, Elisabet, Jones, Michael R., Novoderezhkin, Vladimir I., van Grondelle, Rienk. Both electronic and vibrational coherences are involved in primary electron transfer in bacterial reaction center. Nature communications, vol.10, no.1, 933-.

  13. Wang, Yu‐Chen, Zhao, Yi. Effect of an underdamped vibration with both diagonal and off‐diagonal exciton–phonon interactions on excitation energy transfer. Journal of computational chemistry, vol.40, no.10, 1097-1104.

  14. Romero, Elisabet, Augulis, Ramunas, Novoderezhkin, Vladimir I., Ferretti, Marco, Thieme, Jos, Zigmantas, Donatas, van Grondelle, Rienk. Quantum Coherence in Photosynthesis for Efficient Solar Energy Conversion. Nature physics, vol.10, no.9, 676-682.

  15. Dijkstra, Arend G., Wang, Chen, Cao, Jianshu, Fleming, Graham R.. Coherent Exciton Dynamics in the Presence of Underdamped Vibrations. The journal of physical chemistry letters, vol.6, no.4, 627-632.

  16. Nelson, Tammie R., Ondarse-Alvarez, Dianelys, Oldani, Nicolas, Rodriguez-Hernandez, Beatriz, Alfonso-Hernandez, Laura, Galindo, Johan F., Kleiman, Valeria D., Fernandez-Alberti, Sebastian, Roitberg, Adrian E., Tretiak, Sergei. Coherent exciton-vibrational dynamics and energy transfer in conjugated organics. Nature communications, vol.9, no.1, 2316-.

  17. Christensson, Niklas, Kauffmann, Harald F., Pullerits, Tõnu, Mančal, Tomáš. Origin of Long-Lived Coherences in Light-Harvesting Complexes. The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, vol.116, no.25, 7449-7454.

  18. Chen, Hao, Wang, Xin, Han, Cui-Ming, Li, Hong-Rong. Phonon-mediated excitation energy transfer in a detuned multi-sites system. Journal of physics B, Atomic, molecular, and optical physics, vol.52, no.7, 075501-.

  19. Chen, Hao, Wang, Xin, Fang, Ai-Ping, Li, Hong-Rong. Phonon-assisted excitation energy transfer in photosynthetic systems. Chinese Physics B, vol.25, no.9, 098201-.

  20. Womick, Jordan M., Moran, Andrew M.. Vibronic Enhancement of Exciton Sizes and Energy Transport in Photosynthetic Complexes. The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, vol.115, no.6, 1347-1356.

  21. Tiwari, Vivek, Peters, William K., Jonas, David M.. Electronic resonance with anticorrelated pigment vibrations drives photosynthetic energy transfer outside the adiabatic framework. Proceedings of the National Academy of Sciences of the United States of America, vol.110, no.4, 1203-1208.

  22. Wang, Lili, Allodi, Marco A., Engel, Gregory S.. Quantum coherences reveal excited-state dynamics in biophysical systems. Nature reviews. Chemistry, vol.3, no.8, 477-490.

  23. Caycedo-Soler, Felipe, Lim, James, Oviedo-Casado, Santiago, van Hulst, Niek F., Huelga, Susana F., Plenio, Martin B.. Theory of Excitonic Delocalization for Robust Vibronic Dynamics in LH2. The journal of physical chemistry letters, vol.9, no.12, 3446-3453.

  24. Wu, Eric C., Arsenault, Eric A., Bhattacharyya, Pallavi, Lewis, Nicholas H. C., Fleming, Graham R.. Two-dimensional electronic vibrational spectroscopy and ultrafast excitonic and vibronic photosynthetic energy transfer. Faraday discussions, vol.216, 116-132.

  25. Twyeffort Irish, E. K., Gómez-Bombarelli, R., Lovett, B. W.. Vibration-assisted resonance in photosynthetic excitation-energy transfer. Physical review. A. Atomic, molecular, and optical physics, vol.90, no.a1, 012510-.

  26. Goldberg, Omer, Meir, Yigal, Dubi, Yonatan. Vibration-Assisted and Vibration-Hampered Excitonic Quantum Transport. The journal of physical chemistry letters, vol.9, no.11, 3143-3148.

  27. Kosenkov, Yana Kholod, Kosenkov, Dmitri. Quantum dynamics of vibration-assisted excitation energy transfer in phycobiliprotein light-harvesting complex. The Journal of chemical physics, vol.151, no.14, 144101-.

  28. Li, Z.Z.; Ko, L.; Yang, Z.; Sarovar, M.; Whaley, K. B. Unraveling Excitation Energy Transfer Assisted by Collective Behaviors of Vibrations. 2020, arXiv: 2010.04256. 

  29. Hennebicq, E., Beljonne, D., Curutchet, C., Scholes, G. D., Silbey, R. J.. Shared-mode assisted resonant energy transfer in the weak coupling regime. The Journal of chemical physics, vol.130, no.21, 214505-.

  30. Yeh, Shu-Hao, Hoehn, Ross D., Allodi, Marco A., Engel, Gregory S., Kais, Sabre. Elucidation of near-resonance vibronic coherence lifetimes by nonadiabatic electronic-vibrational state character mixing. Proceedings of the National Academy of Sciences of the United States of America, vol.116, no.37, 18263-18268.

  31. Tiwari, Vivek, Peters, William K., Jonas, David M.. Energy transfer: Vibronic coherence unveiled. Nature chemistry, vol.6, no.3, 173-175.

  32. Dutta, Rajesh, Bagchi, Biman. Quantum Coherence and Its Signatures in Extended Quantum Systems. The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, vol.124, no.22, 4551-4563.

  33. Duan, Hong-Guang, Thorwart, Michael, Miller, R. J. Dwayne. Does electronic coherence enhance anticorrelated pigment vibrations under realistic conditions?. The Journal of chemical physics, vol.151, no.11, 114115-.

  34. Siwiak-Jaszek, Stefan, Olaya-Castro, Alexandra. Transient synchronisation and quantum coherence in a bio-inspired vibronic dimer. Faraday discussions, vol.216, 38-56.

  35. Shibl, Mohamed F, Schulze, Jan, Al-Marri, Mohammed J, Kühn, Oliver. Multilayer-MCTDH approach to the energy transfer dynamics in the LH2 antenna complex. Journal of physics B, Atomic, molecular, and optical physics, vol.50, no.18, 184001-.

  36. Ke, Yaling, Zhao, Yi. Hierarchy of forward-backward stochastic Schrödinger equation. The Journal of chemical physics, vol.145, no.2, 024101-.

  37. Ban, Masashi, Kitajima, Sachiko, Arimitsu, Toshihico, Shibata, Fumiaki. Linear response theory for open systems: Quantum master equation approach. Physical review. A, vol.95, no.2, 022126-.

  38. Kapral, Raymond, Ciccotti, Giovanni. Mixed quantum-classical dynamics. The Journal of chemical physics, vol.110, no.18, 8919-8929.

  39. Kelly, Aaron, van Zon, Ramses, Schofield, Jeremy, Kapral, Raymond. Mapping quantum-classical Liouville equation: Projectors and trajectories. The Journal of chemical physics, vol.136, no.8, 084101-.

  40. Kim, Hyojoon, Nassimi, Ali, Kapral, Raymond. Quantum-classical Liouville dynamics in the mapping basis. The Journal of chemical physics, vol.129, no.8, 084102-.

  41. Kapral, Raymond. PROGRESS IN THE THEORY OF MIXED QUANTUM-CLASSICAL DYNAMICS. Annual review of physical chemistry, vol.57, 129-157.

  42. Kim, Chang Woo, Rhee, Young Min. Toward monitoring the dissipative vibrational energy flows in open quantum systems by mixed quantum-classical simulations. The Journal of chemical physics, vol.152, no.24, 244109-.

  43. Wang, Haobin, Song, Xueyu, Chandler, David, Miller, William H.. Semiclassical study of electronically nonadiabatic dynamics in the condensed-phase: Spin-boson problem with Debye spectral density. The Journal of chemical physics, vol.110, no.10, 4828-4840.

  44. Kim, Hyun Woo, Rhee, Young Min. Improving long time behavior of Poisson bracket mapping equation: A non-Hamiltonian approach. The Journal of chemical physics, vol.140, no.18, 184106-.

  45. Thoss, Michael, Stock, Gerhard. Mapping approach to the semiclassical description of nonadiabatic quantum dynamics. Physical review. A. Atomic, molecular, and optical physics, vol.59, no.1, 64-79.

  46. Meyera), Hans-Dieter, Miller, William H.. A classical analog for electronic degrees of freedom in nonadiabatic collision processes. The Journal of chemical physics, vol.70, no.7, 3214-3223.

  47. Hsieh, Chang-Yu, Kapral, Raymond. Analysis of the forward-backward trajectory solution for the mixed quantum-classical Liouville equation. The Journal of chemical physics, vol.138, no.13, 134110-.

  48. Hsieh, Chang-Yu, Kapral, Raymond. Nonadiabatic dynamics in open quantum-classical systems: Forward-backward trajectory solution. The Journal of chemical physics, vol.137, no.22, 22A507-.

  49. 10.1080/00268976.2013.837207 

  50. Saller, Maximilian A. C., Kelly, Aaron, Richardson, Jeremy O.. Improved population operators for multi-state nonadiabatic dynamics with the mixed quantum-classical mapping approach. Faraday discussions, vol.221, 150-167.

  51. Kim, Hyun Woo, Rhee, Young Min. Two-oscillator mapping modification of the Poisson bracket mapping equation formulation of the quantum-classical Liouville equation. The Journal of chemical physics, vol.153, no.21, 214103-.

  52. Jang, Seogjoo, Jung, YounJoon, Silbey, Robert J.. Nonequilibrium generalization of Förster–Dexter theory for excitation energy transfer. Chemical physics, vol.275, no.1, 319-332.

  53. Yang, Lei, Jang, Seogjoo J.. Theoretical investigation of non-Förster exciton transfer mechanisms in perylene diimide donor, phenylene bridge, and terrylene diimide acceptor systems. The Journal of chemical physics, vol.153, no.14, 144305-.

  54. Cho, Kwang Hyun, Chung, Seyoung, Rhee, Young Min. Efficiently Transplanting Potential Energy Interpolation Database between Two Systems: Bacteriochlorophyll Case with FMO and LH2 Complexes. Journal of chemical information and modeling, vol.59, no.10, 4228-4238.

  55. Kim, Chang Woo, Rhee, Young Min. Constructing an Interpolated Potential Energy Surface of a Large Molecule: A Case Study with Bacteriochlorophyll a Model in the Fenna–Matthews–Olson Complex. Journal of chemical theory and computation, vol.12, no.11, 5235-5246.

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