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Phase and Power Control in the RF Magnetron Power Stations of Superconducting Accelerators

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arxiv 1709.04526 v1 pith:XMKIOVVG submitted 2017-09-13 physics.acc-ph

Phase and Power Control in the RF Magnetron Power Stations of Superconducting Accelerators

classification physics.acc-ph
keywords magnetronacceleratorscontrolpowermodelphasesuperconductingkinetic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Phase and power control methods that satisfy the requirements of superconducting accelerators to magnetron RF sources were considered by a simplified kinetic model of a magnetron driven by a resonant injected signal. The model predicting and explaining stable, low noise operation of the tube below the threshold of self-excitation (the Hatrree voltage in free run mode) at a highest efficiency, a wide range of power control and a wide-band phase control was well verified in experiments demonstrating capabilities of the magnetron transmitters for powering of state of the art superconducting accelerators. Descriptions of the kinetic model, the experimental verification and a conceptual scheme of the highly-efficient magnetron RF transmitter for the accelerators are presented and discussed.

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