Literature DB >> 32012554

Time- and momentum-resolved photoemission studies using time-of-flight momentum microscopy at a free-electron laser.

D Kutnyakhov1, R P Xian2, M Dendzik2, M Heber1, F Pressacco3, S Y Agustsson4, L Wenthaus1, H Meyer3, S Gieschen3, G Mercurio3, A Benz3, K Bühlman5, S Däster5, R Gort5, D Curcio6, K Volckaert6, M Bianchi6, Ch Sanders7, J A Miwa6, S Ulstrup6, A Oelsner8, C Tusche9, Y-J Chen9, D Vasilyev4, K Medjanik4, G Brenner1, S Dziarzhytski1, H Redlin1, B Manschwetus1, S Dong2, J Hauer2, L Rettig2, F Diekmann10, K Rossnagel1, J Demsar4, H-J Elmers4, Ph Hofmann6, R Ernstorfer2, G Schönhense4, Y Acremann5, W Wurth1.   

Abstract

Time-resolved photoemission with ultrafast pump and probe pulses is an emerging technique with wide application potential. Real-time recording of nonequilibrium electronic processes, transient states in chemical reactions, or the interplay of electronic and structural dynamics offers fascinating opportunities for future research. Combining valence-band and core-level spectroscopy with photoelectron diffraction for electronic, chemical, and structural analyses requires few 10 fs soft X-ray pulses with some 10 meV spectral resolution, which are currently available at high repetition rate free-electron lasers. We have constructed and optimized a versatile setup commissioned at FLASH/PG2 that combines free-electron laser capabilities together with a multidimensional recording scheme for photoemission studies. We use a full-field imaging momentum microscope with time-of-flight energy recording as the detector for mapping of 3D band structures in (kx, ky, E) parameter space with unprecedented efficiency. Our instrument can image full surface Brillouin zones with up to 7 Å-1 diameter in a binding-energy range of several eV, resolving about 2.5 × 105 data voxels simultaneously. Using the ultrafast excited state dynamics in the van der Waals semiconductor WSe2 measured at photon energies of 36.5 eV and 109.5 eV, we demonstrate an experimental energy resolution of 130 meV, a momentum resolution of 0.06 Å-1, and a system response function of 150 fs.

Entities:  

Year:  2020        PMID: 32012554     DOI: 10.1063/1.5118777

Source DB:  PubMed          Journal:  Rev Sci Instrum        ISSN: 0034-6748            Impact factor:   1.523


  4 in total

1.  A narrow bandwidth extreme ultra-violet light source for time- and angle-resolved photoemission spectroscopy.

Authors:  Qinda Guo; Maciej Dendzik; Antonija Grubišić-Čabo; Magnus H Berntsen; Cong Li; Wanyu Chen; Bharti Matta; Ulrich Starke; Björn Hessmo; Jonas Weissenrieder; Oscar Tjernberg
Journal:  Struct Dyn       Date:  2022-04-28       Impact factor: 3.670

2.  Ultrafast orbital tomography of a pentacene film using time-resolved momentum microscopy at a FEL.

Authors:  Kiana Baumgärtner; Marvin Reuner; Christian Metzger; Dmytro Kutnyakhov; Michael Heber; Federico Pressacco; Chul-Hee Min; Thiago R F Peixoto; Mario Reiser; Chan Kim; Wei Lu; Roman Shayduk; Manuel Izquierdo; Günter Brenner; Friedrich Roth; Achim Schöll; Serguei Molodtsov; Wilfried Wurth; Friedrich Reinert; Anders Madsen; Daria Popova-Gorelova; Markus Scholz
Journal:  Nat Commun       Date:  2022-05-18       Impact factor: 17.694

3.  A method for studying pico to microsecond time-resolved core-level spectroscopy used to investigate electron dynamics in quantum dots.

Authors:  Tamara Sloboda; Sebastian Svanström; Fredrik O L Johansson; Aneta Andruszkiewicz; Xiaoliang Zhang; Erika Giangrisostomi; Ruslan Ovsyannikov; Alexander Föhlisch; Svante Svensson; Nils Mårtensson; Erik M J Johansson; Andreas Lindblad; Håkan Rensmo; Ute B Cappel
Journal:  Sci Rep       Date:  2020-12-31       Impact factor: 4.379

4.  The TRIXS end-station for femtosecond time-resolved resonant inelastic x-ray scattering experiments at the soft x-ray free-electron laser FLASH.

Authors:  S Dziarzhytski; M Biednov; B Dicke; A Wang; P S Miedema; R Y Engel; J O Schunck; H Redlin; H Weigelt; F Siewert; C Behrens; M Sinha; A Schulte; B Grimm-Lebsanft; S G Chiuzbăian; W Wurth; M Beye; M Rübhausen; G Brenner
Journal:  Struct Dyn       Date:  2020-09-16       Impact factor: 2.920

  4 in total

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