DocumentCode :
1741981
Title :
Ultrafast X-ray science at the Advanced Light Source
Author :
Schoenlin, R.W. ; Chong, H.H.W. ; Glover, T.E. ; Heimann, P.A. ; Shank, C.V. ; Zholents, Alexander ; Zolotorev, M.
Author_Institution :
Div. of Mater. Sci., Lawrence Berkeley Lab., CA, USA
fYear :
2000
fDate :
12-12 May 2000
Firstpage :
187
Abstract :
Summary form only given. An important frontier in ultrafast research is the application of femtosecond X-ray pulses to investigate structural dynamics associated with phase transitions in solids, chemical reactions and rapid biological processes. The fundamental time scale for such processes is an atomic vibrational period, /spl sim/100 fs. Since X-rays interact with core electronic levels they can provide direct information about atomic structure. X-ray diffraction, extended X-ray absorption fine structure (EXAFS) and related X-ray techniques are widely used at modern synchrotrons providing high-brightness X-ray beams. However, the time resolution available from synchrotrons is nearly three orders of magnitude too slow to probe atomic motion within a single vibrational period. We have recently generated femtosecond synchrotron pulses from the Advanced Light Source (ALS) using ultrashort pulses. Future plans for developing femtosecond X-ray science at the ALS will be discussed.
Keywords :
EXAFS; X-ray diffraction; X-ray production; 100 fs; EXAFS; X-ray diffraction; advanced light source; atomic structure; atomic vibrational period; chemical reactions; core electronic levels; direct information; extended X-ray absorption fine structure; femtosecond X-ray pulses; fundamental time scale; high-brightness X-ray beams; phase transitions; rapid biological processes; single vibrational period; solids; structural dynamics; ultrafast X-ray science; ultrafast research; Biological processes; Chemical processes; Electromagnetic wave absorption; Light sources; Probes; Pulse generation; Solids; Synchrotrons; Ultrafast electronics; X-ray diffraction;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Quantum Electronics and Laser Science Conference, 2000. (QELS 2000). Technical Digest
Conference_Location :
San Francisco, CA, USA
ISSN :
1094-5695
Print_ISBN :
1-55752-608-7
Type :
conf
Filename :
901960
Link To Document :
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