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  2. Cyclotron - Wikipedia

    en.wikipedia.org/wiki/Cyclotron

    Lawrence's 60-inch (152 cm) cyclotron, c. 1939, showing the beam of accelerated ions (likely protons or deuterons) exiting the machine and ionizing the surrounding air causing a blue glow. A cyclotron is a type of particle accelerator invented by Ernest Lawrence in 1929–1930 at the University of California, Berkeley, [1] [2] and patented in 1932.

  3. Cyclotron radiation - Wikipedia

    en.wikipedia.org/wiki/Cyclotron_radiation

    In particle physics, cyclotron radiation is electromagnetic radiation emitted by non-relativistic accelerating charged particles deflected by a magnetic field. [1] The Lorentz force on the particles acts perpendicular to both the magnetic field lines and the particles' motion through them, creating an acceleration of charged particles that causes them to emit radiation as a result of the ...

  4. List of accelerators in particle physics - Wikipedia

    en.wikipedia.org/wiki/List_of_accelerators_in...

    Used to separate Uranium 235 isotope for the Manhattan project, after the end of World War II used for separation of medical and other isotopes. 95-inch cyclotron Harvard Cyclotron Laboratory: 1949–2002 Circular Proton 160 MeV Used for nuclear physics 1949 – ~ 1961, development of clinical proton therapy until 2002 JULIC

  5. Ernest Lawrence - Wikipedia

    en.wikipedia.org/wiki/Ernest_Lawrence

    Lawrence's response was to press on with the creation of still larger cyclotrons. The 27-inch cyclotron was superseded by a 37-inch cyclotron in June 1937, [50] which in turn was superseded by a 60-inch cyclotron in May 1939. It was used to bombard iron and produced its first radioactive isotopes in June. [51]

  6. Electrostatic particle accelerator - Wikipedia

    en.wikipedia.org/wiki/Electrostatic_particle...

    In a single-ended electrostatic accelerator the charged particle is accelerated through a single potential difference between two electrodes, so the output particle energy is equal to the charge on the particle multiplied by the accelerating voltage =

  7. TRIUMF - Wikipedia

    en.wikipedia.org/wiki/TRIUMF

    The ions are transported through an evacuated electrostatic beam line containing elements to focus and steer the beam over 60m to the cyclotron. The 520 MeV (million electron volts) variable energy cyclotron accelerates these ions with a high frequency alternating electric field and uses a massive six-sector magnet to confine the beam in an ...

  8. Electron cyclotron resonance - Wikipedia

    en.wikipedia.org/wiki/Electron_cyclotron_resonance

    Electron cyclotron resonance (ECR) is a phenomenon observed in plasma physics, condensed matter physics, and accelerator physics. It happens when the frequency of incident radiation coincides with the natural frequency of rotation of electrons in magnetic fields.

  9. Accelerator physics - Wikipedia

    en.wikipedia.org/wiki/Accelerator_physics

    Accelerator physics is a branch of applied physics, concerned with designing, building and operating particle accelerators.As such, it can be described as the study of motion, manipulation and observation of relativistic charged particle beams and their interaction with accelerator structures by electromagnetic fields.