High power RF operations studies at TARLA facility

Author:

Karsli Ozlem1,Aksoy Avni1,Kaya Caglar1,Koc Burak1,Dogan Mustafa12,Elcim O. Faruk1,Bozdogan Mehmet1

Affiliation:

1. Ankara University, Institute of Accelerator Technologies, 06830, Golbasi, Ankara, Turkey.

2. Istanbul Technical University, Faculty of Electrical Electronical Engineering, 34469, Maslak, Istanbul, Turkey.

Abstract

Turkish Accelerator and Radiation Laboratory (TARLA) is a facility capable of accelerating an electron beam up to 40 MeV. Two beamlines were proposed to generate free-electron laser radiation and bremsstrahlung. The accelerator employs two normal conducting cavities, so-called buncher cavities: subharmonic buncher (SHB) and fundamental buncher (FB), and two cryomodules that house two TESLA cavities each. SHB operates in 260 MHz and FB in 1.3 GHz, and is powered by 1.5 kW and 500 W radio frequency (RF) amplifiers, respectively. Each TESLA cavity is driven by 18 kW saturated high-power solid-state amplifiers (SSA). In addition, a L band pulse compressor system is designed and implemented at the facility to actively promote high-power RF research. Currently, setup of a resonant ring test bench is approved to test the RF components under high power RF conditions. This paper describes the TARLA high power RF, RF controller, and network structures. High power tests and measurements of the RF components of the TARLA beamline are given. Outcomes from the operation of the L band pulse compressor are explained, and the resonant ring test stand is stated as a summary.

Publisher

Canadian Science Publishing

Subject

General Physics and Astronomy

Reference8 articles.

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Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Long term stability of 1.3 GHz high power RF amplifier;TURKISH JOURNAL OF ELECTRICAL ENGINEERING & COMPUTER SCIENCES;2021-03-30

2. OPERATION TESTS of the 260 MHz 1500 W SOLID STATE RF AMPLIFIER at TARLA FACILITY;Communications Faculty of Sciences University of Ankara Series A2-A3 Physical Sciences and Engineering;2019-12-01

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