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Carrier-Specific Hot Phonon Bottleneck in CH
3
NH
3
PbI
3
Revealed by Femtosecond XUV Absorption
Max Verkamp
, Joshua Leveillee
, Aastha Sharma
, Ming Fu Lin
,
André Schleife
,
Josh Vura-Weis
Materials Science and Engineering
Materials Research Lab
National Center for Supercomputing Applications (NCSA)
Chemistry
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:
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peer-review
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Dive into the research topics of 'Carrier-Specific Hot Phonon Bottleneck in CH
3
NH
3
PbI
3
Revealed by Femtosecond XUV Absorption'. Together they form a unique fingerprint.
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Keyphrases
Cm(III)
100%
Femtosecond
100%
Valence Band
100%
Hole Distribution
100%
Hot Phonon Bottleneck
100%
Organolead Halide Perovskite
100%
Hot Carriers
50%
Quantitative Measurement
50%
Optical Probe
50%
Electron Distribution
50%
Electron Dynamics
50%
Carrier Density
50%
Conduction Band
50%
Extreme Ultraviolet
50%
Femtosecond Transient Absorption Spectroscopy
50%
Carrier Cooling
50%
Hole Dynamics
50%
CH3NH3PbI3
50%
Perovskite Semiconductors
50%
Photoexcited Holes
50%
Engineering
Valence Band
100%
Transients
50%
Photovoltaics
50%
Quantitative Measurement
50%
Optical Probe
50%
Hole Temperature
50%
Carrier Concentration
50%
Conduction Band
50%
Material Science
Carrier Concentration
100%
Hot Carrier
100%
Photovoltaics
100%
Absorption Spectroscopy
100%