A. Heo
Kyungpook National University
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Featured researches published by A. Heo.
Physical Review Special Topics-accelerators and Beams | 2010
P. Bambade; M. Alabau Pons; John Amann; D. Angal-Kalinin; R. Apsimon; S. Araki; A. Aryshev; Sha Bai; P. Bellomo; D. R. Bett; G.A. Blair; B. Bolzon; Stewart Boogert; G. Boorman; P. N. Burrows; G. Christian; P. Coe; Ben Constance; J P Delahaye; Laurence Deacon; E. Elsen; A. Faus-Golfe; Masafumi Fukuda; J. Gao; N. Geffroy; E. Gianfelice-Wendt; H. Guler; Hitoshi Hayano; A. Heo; Y. Honda
ATF2 is a final-focus test beam line which aims to focus the low emittance beam from the ATF damping ring to a vertical size of about 37 nm and to demonstrate nanometer level beam stability. Several advanced beam diagnostics and feedback tools are used. In December 2008, construction and installation were completed and beam commissioning started, supported by an international team of Asian, European, and U. S. scientists. The present status and first results are described.
Physical Review Special Topics-accelerators and Beams | 2012
Youngim Kim; Robert Ainsworth; A. Aryshev; S. Boogert; G. Boorman; J. Frisch; A. Heo; Y. Honda; W. H. Hwang; Jung-Yun Huang; Eun-Joo Kim; S. H. Kim; A. Lyapin; T. Naito; Justin May; D. McCormick; R. E. Mellor; S. Molloy; J. Nelson; S. J. Park; Y. J. Park; M. Ross; S. Shin; C. Swinson; T.I. Smith; Nobuhiro Terunuma; T. Tauchi; J. Urakawa; Gannon White
The Accelerator Test Facility 2 (ATF2) is a scaled demonstrator system for final focus beam lines of linear high energy colliders. This paper describes the high resolution cavity beam position monitor (BPM) system, which is a part of the ATF2 diagnostics. Two types of cavity BPMs are used, C-band operating at 6.423 GHz, and S-band at 2.888 GHz with an increased beam aperture. The cavities, electronics, and digital processing are described. The resolution of the C-band system with attenuators was determined to be approximately 250 nm and 1 � m for the S-band system. Without attenuation the best recorded C-band cavity resolution was 27 nm.
Review of Scientific Instruments | 2015
Seon Yeong Noh; Eun-San Kim; Ji-Gwang Hwang; A. Heo; Si won Jang; N.A. Vinokurov; Young Uk Jeong; Seong Hee Park; Kyu-Ha Jang
A cavity-type beam position monitor (BPM) has been developed for a compact terahertz (THz) free-electron laser (FEL) system and ultra-short pulsed electron Linac system at the Korea Atomic Energy Research Institute (KAERI). Compared with other types of BPMs, the cavity-type BPM has higher sensitivity and faster response time even at low charge levels. When electron beam passes through the cavity-type BPM, it excites the dipole mode of the cavity of which amplitude depends linearly on the beam offset from the center of the cavity. Signals from the BPM were measured as a function of the beam offset by using an oscilloscope. The microtron accelerator for the KAERI THz FEL produces the electron beam with an energy of 6.5 MeV and pulse length of 5 μs with a micropulse of 10-20 ps at the frequency of 2.801 GHz. The macropulse beam current is 40 mA. Because the microtron provides multi-bunch system, output signal would be the superposition of each single bunch. So high output signal can be obtained from superposition of each single bunch. The designed position resolution of the cavity-type BPM in multi-bunch is submicron. Our cavity-type BPM is made of aluminum and vacuum can be maintained by indium sealing without brazing process, resulting in easy modification and cost saving. The resonance frequency of the cavity-type BPM is 2.803 GHz and the cavity-type BPM dimensions are 200 × 220 mm (length × height) with a pipe diameter of 38 mm. The measured position sensitivity was 6.19 (mV/mm)/mA and the measured isolation between the X and Y axis was -39 dB. By measuring the thermal noise of system, position resolution of the cavity-type BPM was estimated to be less than 1 μm. In this article, we present the test results of the S-band cavity-type BPM and prove the feasibility of the beam position measurement with high resolution using this device.
Journal of Instrumentation | 2013
A. Heo; Eun-San Kim; H. J. Kim; D. C. Son; Y. Honda; T. Tauchi
We have developed an S-band cavity Beam Position Monitor (BPM) in order to measure the position of an electron beam in the final focus area at ATF2, which is the test facility for the final focus design for the International Linear Collider (ILC). The lattice of the ILC Beam Delivery System (BDS) has been modified, requiring a larger physical aperture of 40 mm in the final focus area. The beam orbit measurement in this area is now covered with high resolution S-Band cavity BPMs. In this paper we summarize the design of the cavity BPM and the first experimental results. The calibration slopes were measured as 0.87 counts/?m in the x-coordinate direction and 1.16 counts/?m in the y-coordinate direction.
Physical Review Letters | 2014
Glen White; R. Ainsworth; Tomoya Akagi; J. Alabau-Gonzalvo; D. Angal-Kalinin; S. Araki; A. Aryshev; Sha Bai; P. Bambade; D. R. Bett; G.A. Blair; C. Blanch; O. Blanco; N. Blaskovic-Kraljevic; B. Bolzon; S. Boogert; P. N. Burrows; Glenn Christian; L. Corner; M. R. Davis; A. Faus-Golfe; Masafumi Fukuda; J. Gao; H. García-Morales; N. Geffroy; Hitoshi Hayano; A. Heo; M. Hildreth; Y. Honda; J. Y. Huang
Conf.Proc.C100523:MOPE070,2010 | 2012
S. Boogert; G. Boorman; Christina Swinson; Robert Ainsworth; S. Molloy; A. Aryshev; Tsukuba Kek; Yosuke Honda; Toshiaki Tauchi; Nobuhiro Terunuma; Junji Urakawa; Josef Frisch; Justin May; D. McCormick; J. Nelson; T.I. Smith; Glen White; M. Woodley; A. Heo; U Kyungpook Natl.; Eun-San Kim; H. S. Kim; Youngim Kim; Pohang Accelerator Lab.
Archive | 2009
Alexey Lyapin; Bino Maiheu; Matthew Wing; Seunghwan Shin; Yosuke Honda; T. Tauchi; Nobuhiro Terunuma; Ibaraki; A. Heo; Eun-San Kim; H. S. Kim; Robert Charles; Douglas Ainsworth; Stewart Boogert; G. Boorman; S. Molloy; D. McCormick; J. Nelson; Glen White
IEEE Transactions on Nuclear Science | 2017
S. W. Jang; E.-S. Kim; A. Heo; Y. Honda; T. Tauchi; Nobuhiro Terunuma; J. G. Hwang
Archive | 2013
A. Heo; Eun-San Kim
Conf.Proc.C100523:MOPE035,2010 | 2012
Youngim Kim; U Kyungpook Natl.; A. Heo; Eun-San Kim; S. Boogert; Yosuke Honda; Tsukuba Kek; Toshiaki Tauchi; Nobuhiro Terunuma; Justin May; D. McCormick; T.I. Smith