Please use this identifier to cite or link to this item: https://hdl.handle.net/10356/144317
Title: Real-time visualization of energy- and momentum-resolved carrier dynamics of spatially heterogeneous materials
Authors: Woo, Kyung Chul
Xu, Ce
Loh, Zhi-Heng
Keywords: Science::Chemistry
Issue Date: 2020
Source: Woo, K. C., Xu, C., & Loh, Z.-H. (2020). Real-time visualization of energy- and momentum-resolved carrier dynamics of spatially heterogeneous materials. Proc. Of the 7th Asian Spectroscopy Conference (ASC 2020). doi:10.32655/ASC_8-10_Dec2020.55
Conference: Asian Spectroscopy Conference 2020
Abstract: Among a variety of methods for studying the ultrafast carrier dynamics in the solid-state materials, time-resolved photoemission electron microscopy (PEEM) has been regarded as a unique tool which can simultaneously achieve the femtosecond time resolution as well as non-diffraction-limited lateral spatial resolution, hence providing spatiotemporally resolved information on surfaces with structural heterogeneities [1]. When combined with an electron time-of-flight analyzer in the form of a delay-line detector [2], PEEM can be further extended to provide spectroscopic information. The consequent energy-resolved momentum-space images acquired at selected microscopic regions can be mapped, hence permitting the real-time visualization of the evolving photorelaxation dynamics of the band structure of solid-state materials. Here, preliminary spectromicroscopic results obtained from the time-resolved PEEM setup will be presented, and further on-going efforts to build a femtosecond megahertz-repetition-rate extreme ultraviolet radiation source will be introduced.
URI: https://hdl.handle.net/10356/144317
DOI: 10.32655/ASC_8-10_Dec2020.55
Research Centres: Institute of Advanced Studies 
Rights: © 2020 Nanyang Technological University.
Fulltext Permission: open
Fulltext Availability: With Fulltext
Appears in Collections:Asian Spectroscopy Conference

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