• Overview of Chinese core journals
  • Chinese Science Citation Database(CSCD)
  • Chinese Scientific and Technological Paper and Citation Database (CSTPCD)
  • China National Knowledge Infrastructure(CNKI)
  • Chinese Science Abstracts Database(CSAD)
  • JST China
  • SCOPUS
The basic principles underlying ultrafast energy and electron transfer in primary[J]. PHYSICS, 2007, 36(11): 816-828.
Citation: The basic principles underlying ultrafast energy and electron transfer in primary[J]. PHYSICS, 2007, 36(11): 816-828.

The basic principles underlying ultrafast energy and electron transfer in primary

More Information
  • Published Date: November 19, 2007
  • The fundamental principles underlying ultrafast energy and electron transfer in primary photosynthesis is reviewed from a physical point of view. The basic theories such as Fermi's golden rule, F?rster and Dexter energy transfer, Marcus electron transfer theory, and exciton theory are introduced. Their common features, conditions for applicability as well as discrepancies are discussed. The aim is to interpret the relation between protein structure and its functions in terms of physical principles, and thus to delineate the main threads of this research field.
  • Related Articles

    [1]HUANG Hai-Qi, WANG Yu-Fei, HU Xiao-Yong. Smart photonic chips based on novel physical phenomena[J]. PHYSICS, 2024, 53(1): 12-21. DOI: 10.7693/wl20240102
    [2]WANG Ke-Lin, CAO Ze-Xian. Is photon simply a massless particle?——The concept of photon revisited[J]. PHYSICS, 2019, 48(11): 726-732. DOI: 10.7693/wl20191104
    [3]SHENG Chong, LIU Hui, ZHU Shi-Ning. Analogical gravitation on photonic chips[J]. PHYSICS, 2019, 48(7): 409-416. DOI: 10.7693/wl20190701
    [4]TANG Guo-Jing, CHEN Xiao-Dong, DONG Jian-Wen. Valley photonic crystals and topological propagation of light[J]. PHYSICS, 2019, 48(6): 376-384. DOI: 10.7693/wl20190604
    [5]Near infrared single-photon detection[J]. PHYSICS, 2010, 39(12): 825-831.
    [6]Novel micro/nano-scale photonic devices[J]. PHYSICS, 2010, 39(09): 597-603.
    [7]Giant Lamb shift in photonic crystals[J]. PHYSICS, 2005, 34(01).
    [8]Applications of photonic crystals in microwave technology[J]. PHYSICS, 2003, 32(12).
    [9]Tunable band gaps in photonic crystals[J]. PHYSICS, 2003, 32(11).
    [10]Comparison between electronic and photonic systems[J]. PHYSICS, 2002, 31(09).

Catalog

    Article views PDF downloads Cited by()

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return