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Ultrafast Carrier and Lattice Dynamics in Plasmonic Nanocrystalline Copper Sulfide Films

Journal Article · · Laser & Photonics Reviews
 [1];  [1];  [2];  [1];  [1]
  1. King's College, London (United Kingdom)
  2. King's College, London (United Kingdom); National Renewable Energy Lab. (NREL), Golden, CO (United States)

Excited carrier dynamics in plasmonic nanostructures determines many important optical properties such as nonlinear optical response and photocatalytic activity. Here it is shown that mesoscopic plasmonic covellite nanocrystals with low free-carrier concentration exhibit a much faster carrier relaxation than in traditional plasmonic materials. A nonequilibrium hot-carrier population thermalizes within first 20 fs after photoexcitation. A decreased thermalization time in nanocrystals compared to a bulk covellite is consistent with the reduced Coulomb screening in ultrathin films. The subsequent relaxation of thermalized, equilibrium electron gas is faster than in traditional plasmonic metals due to the lower carrier concentration and agrees well with that in a bulk covellite showing no evidence of quantum confinement or hot-hole trapping at the surface states. The excitation of coherent optical phonon modes in a covellite is also demonstrated, revealing coherent lattice dynamics in plasmonic materials, which until now was mainly limited to dielectrics, semiconductors, and semimetals. These findings show advantages of this new mesoscopic plasmonic material for active control of optical processes.

Research Organization:
National Renewable Energy Laboratory (NREL), Golden, CO (United States)
Sponsoring Organization:
USDOE Office of Energy Efficiency and Renewable Energy (EERE); Engineering and Physical Sciences Research Council (EPSRC); US Army Research Office (ARO)
Grant/Contract Number:
AC36-08GO28308
OSTI ID:
1768317
Report Number(s):
NREL/JA--5F00-79211; MainId:33437; UUID:694f1926-1e80-4b86-884a-b031ae448d29; MainAdminID:19749
Journal Information:
Laser & Photonics Reviews, Journal Name: Laser & Photonics Reviews Journal Issue: 3 Vol. 15; ISSN 1863-8880
Publisher:
WileyCopyright Statement
Country of Publication:
United States
Language:
English

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  • Journal of the American Chemical Society, Vol. 134, Issue 3, p. 1583-1590 https://doi.org/10.1021/ja207798q
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