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Direct view on the ultrafast carrier dynamics in graphene

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arxiv 1304.2615 v1 pith:ID247M3C submitted 2013-04-09 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords carrierdynamicsenergygraphenediracdirectexcitedonly
verification ladder T0 review T1 audit T2 compute T3 formal
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The ultrafast dynamics of excited carriers in graphene is closely linked to the Dirac spectrum and plays a central role for many electronic and optoelectronic applications. Harvesting energy from excited electron-hole pairs, for instance, is only possible if these pairs can be separated before they lose energy to vibrations, merely heating the lattice. While the hot carrier dynamics in graphene could so far only be accessed indirectly, we here present a direct time-resolved view on the Dirac cone by angle-resolved photoemission (ARPES). This allows us to show the quasi-instant thermalisation of the electron gas to a temperature of more than 2000 K; to determine the time-resolved carrier density; to disentangle the subsequent decay into excitations of optical phonons and acoustic phonons (directly and via supercollisions); and to show how the presence of the hot carrier distribution affects the lifetime of the states far below the Fermi energy.

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