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  2. Synchrotron - Wikipedia

    en.wikipedia.org/wiki/Synchrotron

    The first synchrotron to use the "racetrack" design with straight sections, a 300 MeV electron synchrotron at University of Michigan in 1949, designed by Dick Crane.. A synchrotron is a particular type of cyclic particle accelerator, descended from the cyclotron, in which the accelerating particle beam travels around a fixed closed-loop path.

  3. Synchrotron radiation - Wikipedia

    en.wikipedia.org/wiki/Synchrotron_radiation

    Synchrotron radiation was first observed by technician Floyd Haber, on April 24, 1947, at the 70 MeV electron synchrotron of the General Electric research laboratory in Schenectady, New York. [5] While this was not the first synchrotron built, it was the first with a transparent vacuum tube, allowing the radiation to be directly observed. [6]

  4. List of synchrotron radiation facilities - Wikipedia

    en.wikipedia.org/wiki/List_of_synchrotron...

    Commissioned for synchrotron radiation studies Decommissioned National Synchrotron Light Source (NSLS-II) Brookhaven National Laboratory: US: 3: 792: 2015: Synchrotron Ultraviolet Radiation Facility (SURF) National Institute of Standards and Technology, Gaithersburg, Maryland: US: 0.18: 1961: SURF II storage ring, Synchrotron Ultraviolet ...

  5. European Synchrotron Radiation Facility - Wikipedia

    en.wikipedia.org/wiki/European_Synchrotron...

    On December 6, 2017, the journal Nature unveiled the discovery at the European synchrotron of a new species of dinosaur with surprising characteristics that lived about 72 million years ago. It is a biped, with some features of a velociraptor , an ostrich and a swan, with a crocodile-like muzzle and penguin-like wings.

  6. Synchrotron light source - Wikipedia

    en.wikipedia.org/wiki/Synchrotron_light_source

    Especially when artificially produced, synchrotron radiation is notable for its: High brilliance, many orders of magnitude more than with X-rays produced in conventional X-ray tubes: 3rd-generation sources typically have a brilliance larger than 10 18 photons·s −1 ·mm −2 ·mrad −2 /(0.1%BW), where 0.1%BW denotes a bandwidth 10 −3 ω centered around the frequency ω.

  7. Proton Synchrotron - Wikipedia

    en.wikipedia.org/wiki/Proton_Synchrotron

    The synchrotron (as in Proton Synchrotron) is a type of cyclic particle accelerator, descended from the cyclotron, in which the accelerating particle beam travels around a fixed path. The magnetic field which bends the particle beam into its fixed path increases with time, and is synchronized to the increasing energy of the particles.

  8. Diamond Light Source - Wikipedia

    en.wikipedia.org/wiki/Diamond_Light_Source

    The Diamond synchrotron is the largest UK-funded scientific facility to be built in the UK since the Nimrod proton synchrotron which was sited at the Rutherford Appleton Laboratory in 1964. Nearby facilities include the ISIS Neutron and Muon Source , the Central Laser Facility , and the laboratories at Harwell and Culham (including the Joint ...

  9. Super Proton Synchrotron - Wikipedia

    en.wikipedia.org/wiki/Super_Proton_Synchrotron

    The Super Proton Synchrotron (SPS) is a particle accelerator of the synchrotron type at CERN. It is housed in a circular tunnel, 6.9 kilometres (4.3 mi) in circumference, [ 1 ] straddling the border of France and Switzerland near Geneva , Switzerland.