Energy dissipation from a correlated system driven out of equilibrium

نویسندگان

  • J D Rameau
  • S Freutel
  • A F Kemper
  • M A Sentef
  • J K Freericks
  • I Avigo
  • M Ligges
  • L Rettig
  • Y Yoshida
  • H Eisaki
  • J Schneeloch
  • R D Zhong
  • Z J Xu
  • G D Gu
  • P D Johnson
  • U Bovensiepen
چکیده

In complex materials various interactions have important roles in determining electronic properties. Angle-resolved photoelectron spectroscopy (ARPES) is used to study these processes by resolving the complex single-particle self-energy and quantifying how quantum interactions modify bare electronic states. However, ambiguities in the measurement of the real part of the self-energy and an intrinsic inability to disentangle various contributions to the imaginary part of the self-energy can leave the implications of such measurements open to debate. Here we employ a combined theoretical and experimental treatment of femtosecond time-resolved ARPES (tr-ARPES) show how population dynamics measured using tr-ARPES can be used to separate electron-boson interactions from electron-electron interactions. We demonstrate a quantitative analysis of a well-defined electron-boson interaction in the unoccupied spectrum of the cuprate Bi2Sr2CaCu2O8+x characterized by an excited population decay time that maps directly to a discrete component of the equilibrium self-energy not readily isolated by static ARPES experiments.

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عنوان ژورنال:

دوره 7  شماره 

صفحات  -

تاریخ انتشار 2016