Single-molecule pump-probe detection resolves ultrafast pathways in individual and coupled quantum systems

dc.contributor.author
van Dijk, Erik M. H. P.
dc.contributor.author
Hernando Campos, Jordi
dc.contributor.author
García López, Juan José
dc.contributor.author
Crego Calama, Mercedes
dc.contributor.author
Reinhoudt, David N.
dc.contributor.author
Kuipers, Laurens
dc.contributor.author
García Parajó, María F..
dc.contributor.author
van Hulst, Niek F..
dc.date.issued
2005
dc.identifier
https://ddd.uab.cat/record/114389
dc.identifier
urn:10.1103/PhysRevLett.94.078302
dc.identifier
urn:oai:ddd.uab.cat:114389
dc.identifier
urn:recercauab:ARE-40569
dc.identifier
urn:articleid:10797114v94n7p78302
dc.identifier
urn:scopus_id:18144362473
dc.identifier
urn:wos_id:000227245700072
dc.identifier
urn:oai:egreta.uab.cat:publications/03c9244d-c570-497e-87ad-d63021458196
dc.description.abstract
We report the first experimental study of individual molecules with femtosecond time resolution using a novel ultrafast single-molecule pump-probe method. A wide range of relaxation times from below 100 up to 400 fs is found, revealing energy redistribution over different vibrational modes and phonon coupling to the nanoenvironment. Addressing quantum-coupled molecules we find longer decay times, pointing towards inhibited intramolecular decay due to delocalized excitation. Interestingly, each individual system shows discrete jumps in femtosecond response, reflecting sudden breakup of the coupled superradiant state.
dc.format
application/pdf
dc.language
eng
dc.publisher
dc.relation
Physical review letters ; Vol. 94, Issue 7 (February 2005), p. 78302
dc.rights
open access
dc.rights
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dc.rights
https://rightsstatements.org/vocab/InC/1.0/
dc.title
Single-molecule pump-probe detection resolves ultrafast pathways in individual and coupled quantum systems
dc.type
Article


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