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UID:calendarize-default-067e567cc3e067b880ab3f75fb2b2198
DTSTAMP:20260730T160537Z

DTSTART:20260804T080000Z
DTEND:20260803T210000Z
    
SUMMARY:Seminar "Demonstrating Beam Splitters for Reaction Pathways in the Field of Cold Chemistry"
DESCRIPTION:During the seminar\, Professor Denschlag will present recent advances in ultracold chemistry\, focusing on experiments with ultracold rubidium atoms that reveal how chemical reactions can be coherently controlled at the quantum level. The talk will demonstrate how magnetically tunable mechanisms can act as beam splitters for reaction pathways\, enabling researchers to redirect reaction outcomes between different product channels. This research opens new perspectives for quantum-controlled chemistry and future interferometric approaches to steering chemical reactions.
X-ALT-DESC;FMTTYPE=text/html:<p>During the seminar\, Professor Denschlag will present recent advances in ultracold chemistry\, focusing on experiments with ultracold rubidium atoms that reveal how chemical reactions can be coherently controlled at the quantum level. The talk will demonstrate how magnetically tunable mechanisms can act as beam splitters for reaction pathways\, enabling researchers to redirect reaction outcomes between different product channels. This research opens new perspectives for quantum-controlled chemistry and future interferometric approaches to steering chemical reactions.</p>
LOCATION:UL House of Science\, room 501
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