DocumentCode :
158940
Title :
RF cavity design and qualification for proton accelerator
Author :
Teotia, Vikas ; Malhotra, Sanjay ; Ukarde, Priti ; Singh, Karam ; Itteera, Janvin ; Kumar, Pranaw ; Sinha, Arun Kumar ; Gupta, Suneet K. ; Taly, Y.K. ; Singh, Prashant
Author_Institution :
Control Instrum. Div., Bhabha Atomic Res. Centre, Trombay, India
fYear :
2014
fDate :
Sept. 28 2014-Oct. 3 2014
Firstpage :
641
Lastpage :
643
Abstract :
Alvarez type Drift Tube Linac (DTL) is used for acceleration of proton beam in low energy section of beta ranging from 0.04 to 0.40. DTL is cylindrical RF cavity resonating in TM010 mode at 352.21 MHz frequency. It consists of array of drift tubes arranged ensuring that DTL centre and Drift Tube centre are concentric. The Drift Tubes also houses Permanent Magnet Quadrupole for transverse focusing of proton beam. A twelve cell prototype of DTL section is designed, developed and fabricated at Bhabha Atomic Research Centre, Trombay. Complete DTL accelerator consists of eight such DTL sections. High frequency microwave simulations are carried out in SOPRANO, vector fields and COMSOL simulation software. This prototype DTL is 1640.56 mm long cavity with 520mm ID, 600mm OD and consists of eleven Drift Tubes, two RF end flanges, three slug tuners, six post couplers, three RF field monitors, one RF waveguide coupler, two DN100 vacuum flanges and DTL tank platform with alignment features. Girder based Drift tube mounting arrangement utilizing uncompressing energy of disc springs for optimum combo RF-vacuum seal compression is worked out and implemented. This paper discusses design of this RF vacuum cavity operating at high accelerating field gradient in ultra-high vacuum. Detailed vacuum design and results of RF and vacuum qualifications are discussed. Results on mechanical accuracy achieved on scaled pre-prototype are also presented. Paper summarizes the engineering developments carried out for this RF cavity and brings out the future activities proposed in indigenous development of high gradient RF cavities for ion accelerators.
Keywords :
accelerator RF systems; accelerator cavities; ion accelerators; linear accelerators; particle beam diagnostics; proton accelerators; proton beams; Alvarez type Drift Tube Linac; Bhabha Atomic Research Centre; COMSOL simulation software; DTL accelerator; DTL centre; Girder based drift tube mounting; RF cavity design; RF field monitors; RF vacuum cavity; RF waveguide coupler; RF-vacuum seal compression; SOPRANO; Trombay; disc springs; drift tube centre; high accelerating field gradient; ion accelerators; microwave simulations; permanent magnet quadrupole; post couplers; proton accelerator; proton beam; proton beam acceleration; slug tuners; ultra-high vacuum; vacuum design; vacuum qualifications; vector fields; Cavity resonators; Couplers; Electron tubes; Flanges; Prototypes; Radio frequency; Seals;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Discharges and Electrical Insulation in Vacuum (ISDEIV), 2014 International Symposium on
Conference_Location :
Mumbai
Print_ISBN :
978-1-4799-6750-6
Type :
conf
DOI :
10.1109/DEIV.2014.6961764
Filename :
6961764
Link To Document :
بازگشت