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SUMMARY:Imaging Electronic and Atomic Motion in Molecules
DTSTART:20240325T161500
DTEND:20240325T171500
DTSTAMP:20260407T091325Z
UID:bd72056eef764ea8aa0774dec750fa0f528e1db6ee93fcafcf1f1492
CATEGORIES:Conferences - Seminars
DESCRIPTION:Prof. Manish Garg\, Max Planck Institute for Solid State Resea
 rch\, Stuttgart\nThe capability to capture electronic and atomic motions a
 t their natural length (Ångstrom-scale) and time-scales (attoseconds to f
 emtoseconds) is a long-standing goal in modern science. In my talk\, I wil
 l show you how electron dynamics in molecules can be locally probed with a
 ngstrom-scale spatial resolution and 300 attosecond temporal resolution si
 multaneously\, at the single orbital-level with the help of a scanning tun
 nelling microscope (STM)\, defying the previously established fundamental 
 space-time limits [1-4]. Atomic motions in a single molecule can be direct
 ly imaged by realizing coherent anti-Stokes Raman spectroscopy in an STM [
 5-6]. These recent developments pave the way towards direct real space-tim
 e imaging of chemical reactions and phase transformations in two-dimension
 al materials.\n \n\n	Garg et al. Nature 359-363\, 538 (2016).\n	Gutzler\,
  Garg et al. Nature Reviews Physics 3\, 441-453 (2021). \n	Garg et al.\, N
 ature Photonics\, 16\, 196-202 (2022).\n	Garg and Kern. Science 367 (6476)
 \, 411-415 (2020).\n	Luo et al. Nano Letters 22 (13)\, 5100-5106 (2022).\n
 	 Luo et al. Nature Communications 14\, 3484 (2023)\n
LOCATION:CE 1 2 https://plan.epfl.ch/?room==CE%201%202 https://epfl.zoom.u
 s/j/64905394203
STATUS:CONFIRMED
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