Primary steps of photosynthesis
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[1] Y. Jia,et al. Primary charge separation in mutant reaction centers of Rhodobacter capsulatus , 1993 .
[2] G. Small,et al. Nonphotochemical hole burning of the reaction center of Rhodopseudomonas viridis , 1993 .
[3] Fabrice Rappaport,et al. Visualization of coherent nuclear motion in a membrane protein by femtosecond spectroscopy , 1993, Nature.
[4] D. Chandler,et al. Diabatic surfaces and the pathway for primary electron transfer in a photosynthetic reaction center , 1993 .
[5] W. Bialek,et al. Virtual transitions in nonadiabatic condensed-phase reactions , 1993 .
[6] Y. Jia,et al. Direct observation of ultrafast energy transfer in PSI core antenna , 1993 .
[7] W. Bialek,et al. A new look at the primary charge separation in bacterial photosynthesis , 1992 .
[8] R. Grondelle,et al. Excitation transfer dynamics and spectroscopic properties of the light-harvesting BChl a complex of Prostecochloris aestuatii , 1992 .
[9] R. Friesner,et al. Application of a multilevel Redfield theory to electron transfer in condensed phases , 1992 .
[10] G. Fleming,et al. Mechanism of the initial charge separation in bacterial photosynthetic reaction centers. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[11] S. Boxer,et al. Rapid-flow resonance Raman spectroscopy of bacterial photosynthetic reaction centers. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[12] K. Schulten,et al. Coupling of protein motion to electron transfer: Molecular dynamics and stochastic quantum mechanics study of photosynthetic reaction centers , 1991 .
[13] M. Michel-beyerle,et al. On the mechanism of the primary charge separation in bacterial photosynthesis , 1991 .
[14] C. Kirmaier,et al. An assessment of the mechanism of initial electron transfer in bacterial reaction centers. , 1991, Biochemistry.
[15] G. Small,et al. Excited-state structure and energy-transfer dynamics of the bacteriochlorophyll a antenna complex from Prosthecochloris aestuarii , 1991 .
[16] D. Oesterhelt,et al. Initial electron-transfer in the reaction center from Rhodobacter sphaeroides. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[17] J Deisenhofer,et al. Nobel lecture. The photosynthetic reaction centre from the purple bacterium Rhodopseudomonas viridis. , 1989, The EMBO journal.
[18] D. Oesterhelt,et al. Observation of a bacteriochlorophyll anion radical during the primary charge separation in a reaction center , 1989 .
[19] R. Friesner,et al. Simulation of optical spectra from the reaction center of Rhodopseudomonas viridis , 1988 .
[20] A. Holzwarth,et al. Picosecond kinetics of fluorescence and absorbance changes in photosystem II particles excited at low photon density. , 1987, Proceedings of the National Academy of Sciences of the United States of America.
[21] V. Sundström,et al. Excitation-energy transport in the bacteriochlorophyll antenna systems of Rhodospirillum rubrum and Rhodobacter sphaeroides, studied by low-intensity picosecond absorption spectroscopy , 1986 .
[22] K. Rebane,et al. Kinetics of picosecond bacteriochlorophyll luminescence in vivo as a function of the reaction center state , 1985 .
[23] R. Grondelle,et al. Trapping, loss and annihilation of excitations in a photosynthetic system: II. Experiments with the purple bacteria Rhodospirillum rubrum and Rhodopseudomonas capsulata , 1983 .
[24] B. Matthews,et al. Chlorophyll arrangement in a bacteriochlorophyll protein from Chlorobium limicola , 1975, Nature.
[25] C. Betzel,et al. Three-dimensional structure of system I of photosynthesis at 6 Å resolution , 1993, Nature.
[26] A. Warshel,et al. Computer simulations of electron-transfer reactions in solution and in photosynthetic reaction centers. , 1991, Annual review of physical chemistry.
[27] S. Boxer,et al. Photochemical hole-burning spectroscopy of a photosynthetic reaction center mutant with altered charge separation kinetics: Properties and decay of the initially excited state , 1991 .