Publication | Open Access
Ultrafast lattice dynamics in lead selenide quantum dot induced by laser excitation
13
Citations
32
References
2016
Year
Quantum PhotonicsEngineeringUltrafast Lattice DynamicsUltrafast MagnetismSemiconductor NanostructuresQuantum DotsPbse Quantum DotsLaser ExcitationLattice DilationMaterials ScienceQuantum SciencePhysicsQuantum DeviceQuantum ChemistryNatural SciencesApplied PhysicsCondensed Matter PhysicsPhononQuantum Photonic Device
We directly monitored the lattice dynamics in PbSe quantum dots (QD) induced by laser excitation using ultrafast electron diffraction. The energy relaxation between the carriers and the lattice took place within 10 ps, showing no evidence of any significant phonon bottleneck effect. Meanwhile, the lattice dilation exhibited some unusual features that could not be explained by the available mechanisms of photon-induced acoustic vibrations in semiconductors alone. The heat transport between the QDs and the substrate deviates significantly from Fourier's Law, which opens questions about the heat transfer under nonequilibrium conditions in nanoscale materials.
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