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DTSTART:19960101T000000 END:STANDARD BEGIN:STANDARD TZNAME:GMT TZOFFSETFROM:+0100 TZOFFSETTO:+0000 DTSTART:19961027T020000 RRULE:FREQ=YEARLY;BYMONTH=10;BYDAY=-1SU END:STANDARD END:VTIMEZONE BEGIN:VEVENT DTSTAMP:20260626T071359Z DTSTART;VALUE=DATE-TIME:20160719T140000 DTEND;VALUE=DATE-TIME:20160719T150000 SUMMARY:An X-Ray Spectroscopic Revolution in Time-Resolved Molecular and Solid-State Dynamics (Prof Steve Leone) TZID:Europe/London UID:20160719-094d4345556d270a0155a204bc156281@warwick.ac.uk CREATED:20160630T155427Z DESCRIPTION:Speaker: Professor Steve Leone Title: An X-Ray Spectroscopic Revolution in Time-Resolved Molecular and Solid-State Dynamics Location: MAS 2.05-06 Date and Time: Tuesday July 19th at 2:00-3:00 pm followed a drinks/snacks reception Abstract Intriguing physics and chemistry probl ems abound in the pursuit of attosecond science\, as such measurements p ush the boundaries of fundamental electron dynamics timescales. The x-ra y transitions accessed by attosecond pulses are responsive to charge\, c hemical oxidation state\, and electronic environment. An introduction to attosecond measurements is presented\, with the goal to reveal electron dynamical timescales. Investigations involve explorations of transient states in photodissociation\, coherent electronic superpositions and cha rge migration in molecules\, and determination of carrier dynamics in se miconductor band gap materials. Brief Bio of Steve Leone Steve is one of the fathers of utilizing lasers to study gas-phase reactions and energy -transfer processes\, including trail-blazing applications of laser init iated chemistry as well as infrared chemiluminescence detection. To put this into perspective\, entire conferences are now dedicated to these ar eas that Steve was instrumental in developing. His work on photodissocia tion quantum yields and energy transfer has been paramount to our unders tanding of the fundamental processes occurring at the molecular level du ring the making and breaking of chemical bonds. Steve also pioneered the application of soft x-ray pump-probe spectroscopy whereby high-energy p hotons can be used to study energy transfer processes in molecules that occur on a millionth of a billionth of a second. Steve’s demonstration o f how photon energy is absorbed by molecular bromine and partitioned int o the spin-orbit coupled states of the dissociating bromine atoms is a t extbook example of the importance of soft x-rays as a probe\, paving the way for 100s of future studies on energy transfer processes in more com plex polyatomic systems. Steve’s creativity and insatiable curiosity is complemented by his tremendous physical insight. Having recognised the i mportance of using soft x-rays as probes of chemical reactivity\, he too k the bold step to extend the time-resolution of these measurements. At Berkeley\, he has recently developed multimillion-dollar world-leading c apabilities in attosecond physics\, in which his group is now able to pr obe motion of electrons (10s of a billionth of a billionth of second). H e has applied these cutting-edge experimental techniques to study electr on motion in krypton\, providing another textbook example of how these i ncredibly short pulses of light can help understand processes at the qua ntum level. Most recently\, he has extended this approach to study how e lectrons move through silicon\, essentially unravelling the speed limit in electronic circuitry. In addition to his leadership in the scientific community\, Steve is second to none when it comes to his generosity to help others progress in their careers. Steve has had countless PhD stude nts (60) and postdocs (200) emerge from his group\; Steve has guided eac h and every one of them\, with 70 of these scientist now holding faculty positions in universities across the world (in the UK alone\, there are 5 that are full professors). Helping young scientists reach their goals is a hallmark of Steve’s character. LOCATION: CATEGORIES:Condensed Matter Physics Seminar LAST-MODIFIED:20160630T155427Z ORGANIZER;CN=Mona Shorehdeli: END:VEVENT END:VCALENDAR