Photofragmentation beam splitters for matter-wave interferometry

Extending the range of quantum interferometry to a wider class of composite nanoparticles requires new tools to diffract matter waves. Recently, pulsed photoionization light gratings have demonstrated their suitability for high mass matter-wave physics. Here, we extend quantum interference experimen...

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Veröffentlicht in:Physical review letters 2014-12, Vol.113 (23), p.233001-233001, Article 233001
Hauptverfasser: Dörre, Nadine, Rodewald, Jonas, Geyer, Philipp, von Issendorff, Bernd, Haslinger, Philipp, Arndt, Markus
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Sprache:eng
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Zusammenfassung:Extending the range of quantum interferometry to a wider class of composite nanoparticles requires new tools to diffract matter waves. Recently, pulsed photoionization light gratings have demonstrated their suitability for high mass matter-wave physics. Here, we extend quantum interference experiments to a new class of particles by introducing photofragmentation beam splitters into time-domain matter-wave interferometry. We present data that demonstrate this coherent beam splitting mechanism with clusters of hexafluorobenzene and we show single-photon depletion gratings based both on fragmentation and ionization for clusters of vanillin. We propose that photofragmentation gratings can act on a large set of van der Waals clusters and biomolecules which are thermally unstable and often resilient to single-photon ionization.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.113.233001