• Title/Summary/Keyword: VLBI%3A KVN

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Observational Studies with the Korean VLBI Network

  • Cho, Se-Hyung;KVN Groups
    • The Bulletin of The Korean Astronomical Society
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    • v.38 no.2
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    • pp.32-32
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    • 2013
  • The Korean VLBI Network (KVN) as a world-first multi-frequency VLBI system is operated at four bands of 22, 43, 86, and 129 GHz simultaneously. The performances of both single dish and VLBI network were already confirmed through single dish researches and VLBI evaluation test observations. The VLBI common use of the KVN at 22/43 GHz bands has been started from this autumn. The combined network of KVN and Japanese VERA (KaVA) will start the common use from the first half of next year. Here we present several observational results in the fields of star forming regions, late-type stars, and active galactic nuclei using the KVN and KaVA. The fringes of 44 GHz $CH_3OH$ (Class I) masers were detected from 26 sources for the first time using the KVN and imaging observations are under performing. Simultaneous observations of SiO and $H_2O$ masers toward about 1000 evolved stars showed the different maser properties between SiO and $H_2O$ masers according to the evolutionary stages of AGB and post-AGB stars. The catalog of correlated flux densities were established from a 43 GHz (Q-band) survey of 637 extragalactic sources. At 22 GHz (K-band), flux density measurement and fringe survey for new sources were performed toward a large number of sources. In addition, the large program of KVN and/or KaVA under planning is introduced.

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MASK: Multi-frequency AGN Survey with the KVN

  • Jung, Taehyun;Zhao, Guangyao;Kim, Minsun;Sohn, Bong Won;Byun, Do-Young;Wagner, Jan;Wajima, Kiyoaki;Cea, Christian Saez de;Kwon, Woojin;Lee, Jeong Ae;Cho, Ilje;Jeong, Dawoon;Kim, Dongjin;Ryu, Dongsoo
    • The Bulletin of The Korean Astronomical Society
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    • v.41 no.2
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    • pp.32.3-32.3
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    • 2016
  • Available VLBI sources at high frequencies (e.g. >22GHz) are very limited - mainly due to atmospheric fluctuations that degrade coherence time and a power-law energy distribution of particles in case of AGNs. However, simultaneous multi-frequency VLBI receiving system of the Korean VLBI Network (KVN) and its powerful VLBI phase calibration technique offer benefits in finding more weak sources at millimeter wavelengths. Based on this aspect, multi-frequency AGN survey with the KVN (MASK) project, which aims to densify an existing a VLBI catalog of extragalactic radio sources at 22/43/86/129GHz is proposed as a KVN legacy program. We selected 1220 sources of AGNs that include known VLBI sources and new fringe-detected sources using the KVN at K-band (22GHz). Among them, 138 sources were observed as pilot experiments at 22/43/86/129GHz simultaneously and excellent VLBI detection results are achieved. Therefore, we expect that MASK will open a new era in VLBI science at millimeter wavelengths by providing unprecedented number of available sources in the Universe.

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PERFORMANCE EVALUATION OF DIGITAL DATA PROCESSING SYSTEM FOR KOREAN VLBI NETWORK(KVN) (KVN을 위한 디지털 데이터 처리 시스템의 성능평가)

  • Oh, Se-Jin;Roh, Duk-Gyoo;Yeom, Jae-Hwan;Byun, Do-Young;Lee, Chang-Hoon;Chung, Hyun-Soo;Je, Do-Heung;Wajima, Kiyoaki;Kawakami, Kazuyuki
    • Publications of The Korean Astronomical Society
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    • v.22 no.3
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    • pp.63-73
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    • 2007
  • In this paper, we introduce the performance test results of digital data processing system for KVN (Korean VLBI Network). The digital data processing system for KVN consists of DAS (Data Acquisition System) and high-speed recorder which called Mark5B system. DAS system performs the digitalization of analog radio signal through ADS-1000 gigabit sampler with 1 Gsps/2-bit and process the digital filtering of digital signal. Mark5B system records the output data of DFB (Digital Filter Bank) with about 1 Gbps. In this paper, we carried out the preliminary evaluation experiments of the KVN digital data processing system connected between DAS system and Mark5B with VSI (VLBI Standard Interface) interface which is designed for compatible in each VLBI system. We first performed all of the KVN digital data processing system connected by VSI interface in the world. In factory inspection phase, we found that the DAS system has a memory read/write error in DSM (Digital Spectrometer) by analyzing the recorded data in Mark5B system. We confirmed that the DSM memory error has been correctly solved by comparing DSM results with Mark5B results. The effectiveness of KVN digital data processing system has been verified through the preliminary experiments such as data transmission, recording with VSI interface connection and data analysis between DSM and Mark5B system. In future work, we will perform the real astronomical observation by using the KVN 21m radio telescopes so as to verify its stability and performance.

Measuring AGN Core-shift Effect by Extended KVN with Global Baselines

  • Jung, Taehyun;Dodson, Richard;Han, Seog-Tae;Byun, Do-Young;Sohn, Bong Won;Rioja, Maria J.;Honma, Mareki;Stevens, Jamie;de Vincente, Pablo
    • The Bulletin of The Korean Astronomical Society
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    • v.40 no.2
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    • pp.43.3-44
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    • 2015
  • Very Long Baseline Interferometry (VLBI) at millimeter wavelengths results in the highest angular resolutions achieved in astronomy and has a unique access to emission regions that are inaccessible with any other approach or at longer wavelengths. The simultaneous multi-frequency VLBI system in the Korean VLBI Network (KVN) is considered one of the most effective systems for compensating the atmospheric phase fluctuations, which is particularly bothersome at mm-VLBI. We have been demonstrating its performance and uniqueness at mm-VLBI observations. As a results, international VLBI partners from Japan, China, Australia and EU have expressed their interest on the KVN style simultaneous multi-frequency system. In this talk, we will report the activities for extending the simultaneous multi-frequency system to global VLBI network and introduce its science driver, measuring AGN core-shift effects.

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Current Status and Future Prospects of Korean VLBI Network (KVN)

  • Jung, Taehyun;Sohn, Bong Won;So, Byunghwa;Oh, Chungsik;Je, Do-Heung;Byun, Do-Young;Jung, Dong-Kyu;Roh, Duk Gyoo;Lee, Euikyum;Kim, Hyo Ryoung;Kim, Hyun-Goo;Byun, Hyungkyu;Chung, Hyunsoo;Yim, In Sung;Kim, Jae-Young;Kim, Jaeheon;Yeom, Jaehwan;Shin, Jaesik;Park, Jeong-Je;Kim, Jeong-Sook;Hwang, Jungwook;Wajima, Kiyoaki;Song, Min-Gyu;Chung, Moon-Hee;Sakai, Nobuyuki;Lee, Sang-Hyun;Lee, Sang-Sung;Oh, Sej-Jin;Wi, Seog Oh;Kim, Seungrae;Kim, Soon-Wook;Lee, Sung-Mo;Kang, Yong-Woo;Minh, Young Chol;Kim, Young-Sik;Yun, Youngjoo
    • The Bulletin of The Korean Astronomical Society
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    • v.46 no.1
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    • pp.60.3-61
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    • 2021
  • The Korean VLBI Network (KVN) consists of three 21m radio telescopes installed in Seoul, Ulsan, and Jeju Island with the world's first 4-channel receiver that can observe four different frequencies (e.g., 22, 43, 86, 129 GHz) simultaneously. This receiving system of KVN is particularly effective in millimeter-wavelength VLBI (mm-VLBI) observations by compensating fast atmospheric fluctuations effectively. This technology is now being enhanced with a compact triple-band receiver, becoming the world standard for a mm-VLBI system. In 2020, KVN supported 54 observing programs (KVN: 28, EAVN: 26) including the 2nd KVN Key Science Program (KSP) which supports 8Gbps data recording rate and the East Asian VLBI Network (EAVN) programs. KVN also participated in the European VLBI Network (EVN) and GMVA (Global Millimeter VLBI Array) sessions regularly. Here, we report current status and future propsects of KVN.

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Amplitude Correction Factors of KVN Observations Correlated by DiFX and Daejeon Correlators

  • Lee, Sang-Sung
    • The Bulletin of The Korean Astronomical Society
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    • v.40 no.1
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    • pp.54.1-54.1
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    • 2015
  • We report results of investigation of amplitude calibration for very long baseline interferometry (VLBI) observations with Korean VLBI Network (KVN). Amplitude correction factors are estimated based on comparison of KVN observations at 22 GHz correlated by Daejeon hardware correlator and DiFX software correlator in Korea Astronomy and Space Science Institue (KASI) with Very Long Baseline Array (VLBA) observations at 22 GHz by DiFX software correlator in National Radio Astronomy Observatory (NRAO). We used the observations for compact radio sources, 3C 454.3 and NRAO 512 which are almost unresolved for baselines in a range of 350-477 km. VLBA visibility data of the sources observed with similar baselines as KVN are selected, fringe-fitted, calibrated, and compared in their amplitudes. We found that visibility amplitudes of KVN observations should be corrected by factors of 1.14 and 1.40 when correlated by DiFX and Daejeon correlators, respectively. These correction factors are attributed to the combination of two steps of 2-bit quantization in KVN observing systems and characteristics of Daejeon correlator.

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A Study on Software Correlator Analysis for Korean VLBI Network (KVN을 위한 소프트웨어 상관기 분석연구)

  • Oh, Se-Jin;Roh, Duk-Gyoo;Kim, Kwang-Dong;Lee, Chang-Hoon;Chung, Hyun-Soo
    • Proceedings of the KIEE Conference
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    • 2005.10b
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    • pp.319-321
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    • 2005
  • 한국천문연구원에서는 한국우주전파관측망(Korean VLBI Network; KVN)에서 사용할 관측 시스템 중에서 소규모 자료획득시스템(DAS) 구축을 위하여 기가비트 고속샘플러, PC-VSI 보드, 소프트웨어 상관기를 도입하였다. 고속샘플러는 기가비트급 ADS1000, PC-VSI 보드는 VSI-H(VLBI Standard Interface Hardware) 표준을 따른 PCI 버스를 채택하고 있어 일반 컴퓨터에 설치하여 동작되며, 이 규격을 갖춘 시스템과의 데이터 입출력이 가능하다. 소프트웨어 상관기는 일본 NILT와의 연구협력을 통하여 본 연구원에서도 사용할 수 있게 되었으며, FX와 XF 형 2가지를 모두 갖추고 있다. 하지만 현재 구현된 소프트웨어 상관기는 측지 VLBI 관측을 위해 설계되어 있어, 향후 KVN의 하드웨어 상관기와 함께 천문 VLBI 관측을 위한 3기선 분의 소프트웨어 상관기로 개량하려고 한다. 이상에서 소개한 시스템을 좁은 의미로 K5 시스템이라고도 한다. 본 논문에서는 PC-VSI 보드에 대해 간략히 소개하고, K5 시스템을 이용하여 관측한 결과를 빨리 관측자가 원하는 정보를 얻을 수 있는 소프트웨어 상관기의 구조에 대해서도 소개하고자 한다.

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Flux Monitoring of Intraday Variable Sources with KVN Yonsei Radio Telescope

  • Lee, Jee-Won;Sohn, Bong-Won;Byun, Do-Young;Lee, Jeong-Ae;Park, Pulun;Kim, Min-Joong;Kim, Sung-Soo S.
    • Bulletin of the Korean Space Science Society
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    • 2010.04a
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    • pp.34.3-34.3
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    • 2010
  • We present the results of flux monitoring of BL Lac object 0716+71 and 0954+65 at 22GHz and 43GHz. Both of the flat spectrum radio sources are known as Intraday variables (IDVs) which are characterized by fast flux variation on time scales of a day or less. In general, the IDV phenomenon is interpreted as the effect of refractive scintillation in the interstellar medium or the evidence of source intrinsic flux variation. The observations were made simultaneously at 22GHz and 43GHz with KVN Yonsei 21m radio telescope.

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Identification Of Jet Components Of CTA 102 On Milliarcsecond Scales Using The iMOGABA Program

  • Kim, Sang-Hyun;Lee, Sang-Sung;Hodgson, Jeffrey A.;Lee, Jee Won;Kang, Sincheol;Yoo, Sung-Min
    • The Bulletin of The Korean Astronomical Society
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    • v.44 no.1
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    • pp.76.1-76.1
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    • 2019
  • CTA 102, one of gamma-ray bright active galactic nuclei (AGN) has been observed with Korean very long baseline interferometry (VLBI) network (KVN) during the period of 2012 December-2018 May as part of interferometric Monitoring Of Gamma-ray Bright AGN (iMOGABA). Multi-frequency VLBI observations enable us to compare the milliarcsecond(mas)-scale iMOGABA images of relativistic jets with those from the Monitoring Of Jets in AGN with Very long baseline array (VLBA) Experiments (MOJAVE) and the VLBA-Boston University(BU)-BLAZAR programs which use VLBA with its angular resolutions of 0.2-1.3 mas. In spite of the relative larger beam sizes of KVN (1-10 mas), we are able to identify jet components of CTA 102 using the KVN multi-frequency VLBI observations with those resolved with VLBA. Considering an instrumental beam blending effect on the jet component identification, we were able to obtain a blending shift of the core position based on a convolution analysis using the VLBA data. When we apply the core position shift to the KVN images of CTA 102, we find that the identified jet components of CTA 102 from the KVN observations are well matched with those from the VLBA observations. Based on the results of the analysis, we may be able to study the jet kinematics and its correlation with gamma-ray flare activity.

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Recent results of a KVN key science program: iMOGABA

  • Lee, Sang-Sung
    • The Bulletin of The Korean Astronomical Society
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    • v.41 no.2
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    • pp.60.2-60.2
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    • 2016
  • We present recent results of very long baseline interferometry (VLBI) observations of gamma-ray bright active galactic nuclei (AGNs) using Korean VLBI Network (KVN) at 22, 43, 86, and 129~GHz bands, which are part of a KVN key science program; Interferometric Monitoring of Gamma-ray Bright AGNs (iMOGABA). We selected a total of 34 radio-loud AGNs of which 30 sources are gamma-ray bright AGNs, including 24 sources monitored by the Fermi Gamma-ray Space Telescope using the Large Area Telescope on board. The selected sources consist of 24 quasars, 7 BL Lacs, and 3 radio galaxies. In this talk, we summarize recent results of the iMOGABA, including results of single-epoch multi-frequency VLBI observations of the target sources, conducted during a 24-hr session on 2013 November 19 and 20. All observed sources were detected and imaged at all frequency bands with or without a frequency phase transfer technique which enabled to detect and image 12 faint sources at 129 GHz, except for 0218+357 which was detected for only one baseline at all frequency bands.

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