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Phase Modulator Programming to Get Flat Pulses with Desired Length and Power from the CTF3 Pulse Compressors

The pulse compressor is located after the klystron to increase the power peak by storing the energy at the beginning and releasing it near the end of klystron output pulse. In the CTF3 pulse compressors a doubling of the peak power is achieved according to our needs and the machine parameters. The m...

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Autores principales: Shaker, Seyd Hamed, Corsini, Roberto, Skowronski, Piotr, Syratchev, Igor, Tecker, Frank
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1307885
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author Shaker, Seyd Hamed
Corsini, Roberto
Skowronski, Piotr
Syratchev, Igor
Tecker, Frank
author_facet Shaker, Seyd Hamed
Corsini, Roberto
Skowronski, Piotr
Syratchev, Igor
Tecker, Frank
author_sort Shaker, Seyd Hamed
collection CERN
description The pulse compressor is located after the klystron to increase the power peak by storing the energy at the beginning and releasing it near the end of klystron output pulse. In the CTF3 pulse compressors a doubling of the peak power is achieved according to our needs and the machine parameters. The magnitude of peak power, pulse length and flatness can be controlled by using a phase modulator for the input signal of klystrons. A C++ code is written to simulate the pulse compressor behaviour according to the klystron output pulse power. By manually changing the related parameters in the code for the best match, the quality factor and the filling time of pulse compressor cavities can be determined. This code also calculates and sends the suitable phase to the phase modulator according to the klystron output pulse power and the desired pulse length and peak power
id cern-1307885
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2010
record_format invenio
spelling cern-13078852022-08-17T13:31:16Zhttp://cds.cern.ch/record/1307885engShaker, Seyd HamedCorsini, RobertoSkowronski, PiotrSyratchev, IgorTecker, FrankPhase Modulator Programming to Get Flat Pulses with Desired Length and Power from the CTF3 Pulse CompressorsAccelerators and Storage RingsThe pulse compressor is located after the klystron to increase the power peak by storing the energy at the beginning and releasing it near the end of klystron output pulse. In the CTF3 pulse compressors a doubling of the peak power is achieved according to our needs and the machine parameters. The magnitude of peak power, pulse length and flatness can be controlled by using a phase modulator for the input signal of klystrons. A C++ code is written to simulate the pulse compressor behaviour according to the klystron output pulse power. By manually changing the related parameters in the code for the best match, the quality factor and the filling time of pulse compressor cavities can be determined. This code also calculates and sends the suitable phase to the phase modulator according to the klystron output pulse power and the desired pulse length and peak poweroai:cds.cern.ch:13078852010
spellingShingle Accelerators and Storage Rings
Shaker, Seyd Hamed
Corsini, Roberto
Skowronski, Piotr
Syratchev, Igor
Tecker, Frank
Phase Modulator Programming to Get Flat Pulses with Desired Length and Power from the CTF3 Pulse Compressors
title Phase Modulator Programming to Get Flat Pulses with Desired Length and Power from the CTF3 Pulse Compressors
title_full Phase Modulator Programming to Get Flat Pulses with Desired Length and Power from the CTF3 Pulse Compressors
title_fullStr Phase Modulator Programming to Get Flat Pulses with Desired Length and Power from the CTF3 Pulse Compressors
title_full_unstemmed Phase Modulator Programming to Get Flat Pulses with Desired Length and Power from the CTF3 Pulse Compressors
title_short Phase Modulator Programming to Get Flat Pulses with Desired Length and Power from the CTF3 Pulse Compressors
title_sort phase modulator programming to get flat pulses with desired length and power from the ctf3 pulse compressors
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1307885
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