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STI Optronics, Inc. Patents
Assignee:
STI Optronics, Inc.
Address:
Bellevue, WA
No. of patents:
8
Patents:




Patent Number Title Of Patent Date Issued
7196601 Temperature correction of wigglers and undulators March 27, 2007
An undulator includes a periodic arrangement of magnets to produce a periodic spatial magnetic field distribution in a magnetic gap defined by the magnets. The undulator further includes a temperature-compensating material selectively arranged to compensate for a temperature-dependent
6906333 Magnetic separator for linear dispersion and method for producing the same June 14, 2005
A magnetic sector for charged particle beam transport that includes a magnetic field profile that achieves a linear dispersion from a collimated beam of charged particles proportional to their mass-energy-to-charge ratio. In one embodiment, the field profile necessary for the linear
6843375 Magnetic separator for linear dispersion and method for producing the same January 18, 2005
A magnetic sector for charged particle beam transport that includes a magnetic field profile that achieves a linear dispersion from a collimated beam of charged particles proportional to their mass-energy-to-charge ratio. In one embodiment, the field profile necessary for the linear
6573817 Variable-strength multipole beamline magnet June 3, 2003
A multipole beamline magnet (10) includes a plurality of stationary poles (12) formed of ferromagnetic material and one or more permanent magnets (14) that are disposed between the plurality of stationary poles. Each of the permanent magnets supplies magnetomotive force to two adjacent
5774491 Energy exchange between a laser beam and charged particles using inverse diffraction radiation a June 30, 1998
A method and apparatus for exchanging energy between relativistic charged particles and laser radiation using inverse diffraction radiation or inverse transition radiation. The beam of laser light is directed onto a particle beam by means of two optical elements which have apertures or
5737354 Energy exchange between a laser beam and charged particles using inverse transition radiation an April 7, 1998
A method and apparatus for exchanging energy between relativistic charged particles and laser radiation using inverse diffraction radiation or inverse transition radiation. The beam of laser light is directed onto a particle beam by means of two optical elements which have apertures or
5661304 Multi-purpose noninterceptive charged particle beam diagnostic device using diffraction radiatio August 26, 1997
A method and apparatus for detecting diffraction radiation from a charged particle beam in order to measure parameters that characterize the charged particle beam. The charged particle beam passes near one or more edges, apertures, or interfaces between media of different dielectric cons
5528212 Method and apparatus for control of a magnetic structure June 18, 1996
A method and apparatus for independently adjusting the spacing between opposing magnet arrays in charged particle based light sources. Adjustment mechanisms between each of the magnet arrays and the supporting structure allow the gap between the two magnet arrays to be independently adju

 
 
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