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zeige Details Liss, K.-D., Hock, R., ... Storage of X-ray photons in a crystal resonator
in: Nature . - London [u.a.] : Nature Publising Group, ISSN 1476-4687, Vol. 404, No. 6776 (2000), p. 371-373
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2000
The temporal structure and high brilliance of the X-ray beams producedby third-generation synchrotrons open up new possibilities in time-dependentdiffraction and spectroscopy, where timescales down to the sub-nanosecondregime can now be accessed. These beam properties are such that one can envisagethe development of the X-ray equivalent of optical components, such as photondelay lines and resonators, that have proved indispensable in a wide rangeof experiments—for example, pump-probe and multiple-interaction experiments—and(through shaping the temporal structure and repetition rate of the beams)time-dependent measurements in crystallography, physics, biology and chemistry. Optical resonators, such as those used in lasers, are availableat wavelengths from the visible to soft X-rays. Equivalentcomponents for hard X-rays have been discussed for more than thirty years, but have yet to be realized. Here we report the storage ofhard X-ray photons (energy 15.817 keV) in a crystal resonator formed by twoplates of crystalline silicon. The photons are stored for as many as 14 back-and-forthcycles within the resonator, each cycle separated by one nanosecond.
beteiligte Personen: Liss, K.-D. , Hock, R. , Gomm, M. , Waibel, B. , Magerl, A. , Krisch, M. , Tucoulou, R.
Format: Elektronisch
Erschienen: 2000.
Serie: Nature Archives 1869 - 2007 [Dig. Serial]
Schlagwörter:
URL: http://dx.doi.org/10.1038/35006017

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