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1.
Performance of the ISS-CREAM Calorimeter / Picot-Clémente, Nicolas (Maryland U., College Park, IPST) ; Amare, Y (Maryland U., College Park, IPST) ; Anderson, T (Penn State U.) ; Angelaszek, D (Maryland U., College Park, IPST ; Maryland U.) ; Anthony, N (Maryland U.) ; Cheryian, K (Maryland U.) ; Choi, G H (Sungkyunkwan U.) ; Copley, M (Maryland U., College Park, IPST) ; Coutu, S (Penn State U.) ; Derome, L (LPSC, Grenoble) et al.
The Cosmic Ray Energetics And Mass experiment for the International Space Station (ISS-CREAM) is scheduled for launch in 2017. It is designed to directly measure and identify theelemental composition of incident Galactic cosmic rays from a few hundred GeV to PeV energies.Such large energy range sensitivity is reached by using an electromagnetic sampling calorimeter(CAL) which measures the energy deposit of particle-induced showers. [...]
SISSA, 2017 - 6 p. - Published in : PoS ICRC2017 (2018) 247 Fulltext: PDF; External link: PoS server
In : 35th International Cosmic Ray Conference, Busan, Republique De Coree, 12 - 20 Jul 2017, pp.247
2.
Performance of the BACCUS Transition Radiation Detector / Picot-Clémente, Nicolas (Maryland U., College Park, IPST) ; Amare, Y (Maryland U., College Park, IPST) ; Anderson, T (Penn State U.) ; Angelaszek, D (Maryland U., College Park, IPST ; Maryland U.) ; Anthony, N (Maryland U.) ; Cheryian, K (Maryland U.) ; Choi, G H (Sungkyunkwan U.) ; Copley, M (Maryland U., College Park, IPST) ; Coutu, S (Penn State U.) ; Derome, Laurent (LPSC, Grenoble) et al.
The Boron And Carbon Cosmic rays in the Upper Stratosphere (BACCUS) balloon-borne exper-iment flew for 30 days over Antarctica in December 2016. It is the successor of the CREAMballoon program in Antarctica which recorded a total cumulative exposure of 161 days. [...]
SISSA, 2017 - 8 p. - Published in : PoS ICRC2017 (2018) 246 Fulltext: PDF; External link: PoS server
In : 35th International Cosmic Ray Conference, Busan, Republique De Coree, 12 - 20 Jul 2017, pp.246
3.
Charge resolution of the ISS-CREAM SCD measured with a heavy-ion beam / Hong, Gihan (Sungkyunkwan U.) ; Amare, Y (Maryland U., College Park, IPST) ; Anderson, T (Penn State U.) ; Angelaszek, D (Maryland U., College Park, IPST ; Maryland U.) ; Anthony, N (Maryland U., College Park, IPST) ; Cheryian, K (Maryland U., College Park, IPST) ; Choi, G H (Sungkyunkwan U.) ; Copley, M (Maryland U., College Park, IPST) ; Coutu, S (Penn State U.) ; Derome, L (LPSC, Grenoble) et al.
The Cosmic Ray Energetics And Mass experiment for the International Space Station (ISS-CREAM) is scheduled to be launched and installed on the ISS in August 2017, and will carry out a measurement of the energy and composition of energetic cosmic rays in space. The Silicon Charge Detector (SCD) will identify the charge of through-going cosmic rays. [...]
SISSA, 2017 - 8 p. - Published in : PoS ICRC2017 (2018) 229 Fulltext: PDF; External link: PoS server
In : 35th International Cosmic Ray Conference, Busan, Republique De Coree, 12 - 20 Jul 2017, pp.229
4.
The Cosmic Ray Energetics and Mass (CREAM) timing charge detector / Ahn, H S ; Allison, P S ; Bagliesi, M G ; Beatty, J J ; Bigongiari, G ; Boyle, P ; Childers, J T ; Conklin, N B ; Coutu, S ; DuVernois, M A et al.
The use of detectors based on plastic scintillator with photomultiplier tubes (PMTs) is common in cosmic-ray experiments to differentiate particle charges. However, in the presence of a calorimeter, the standard method of pulse charge integration over a time longer than a PMT pulse is hampered by abundant albedo particles. [...]
2009 - 12 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 602 (2009) 525-536
5.
The CREAM-III Calorimeter / Malinin, A (Maryland U.) ; Lee, M H (Maryland U.) ; Ahn, H S (Maryland U.) ; Ganel, O (Maryland U.) ; Han, J H (Maryland U.) ; Jeon, J A (Ewha Women's U., Seoul) ; Kim, C H (Maryland U.) ; Kim, K C (Maryland U.) ; Lutz, L (Maryland U.) ; Nam, S (Ewha Women's U., Seoul) et al.
After successful recovery of the first CREAM (Cosmic Ray Energetics And Mass) instrument during the 2004\/5 Antarctic campaign, the calorimeter was refurbished for the third launch, planned for December 2007. In this CREAM-III calorimeter, the optics were replaced with multi-clad fiber ribbons to enhance the light signal. [...]
2007 - 4 p. - Published in : : 2 (2008) , pp. 409-412 Fulltext: PDF; External link: INDICO
In : 30th International Cosmic Ray Conference, Merida, Mexico, 3 - 11 Jul 2007, pp.409-412
6.
Elemental Spectra from the CREAM-I Flight / Ahn, Hoseok ; Allison, P S ; Bagliesi, M G ; Beatty, J J ; Bigongiari, G ; Boyle, P J ; Childers, J T ; Conklin, N B ; Coutu, S ; Duvernois, M A et al.
The Cosmic Ray Energetics And Mass (CREAM) instrument is a balloon-borne experiment designed to measure the composition and energy spectra of cosmic rays of charge Z = 1 to 26 up to an energy of ∼1015 eV. CREAM had two successful flights on long-duration balloons (LDB) launched from McMurdo Station, Antarctica, in December 2004 and December 2005. [...]
2007 - 4 p. - Published in : : 2, pp. 63-66 Fulltext: PDF; External link: INDICO
In : 30th International Cosmic Ray Conference, Merida, Mexico, 3 - 11 Jul 2007, pp.63-66
7.
Measurements of High-Energy Heavy Nuclei with the CREAM-I TRD / Wakely, Scott P (Chicago U.) ; Ahn, H S (Maryland U.) ; Allison, P S (Ohio State U.) ; Bagliesi, M G (U. Siena (main) ; INFN, Siena) ; Beatty, J J (Ohio State U.) ; Bigongiari, G (U. Siena (main) ; INFN, Siena) ; Boyle, P J (Chicago U., EFI) ; Brandt, T J (Ohio State U.) ; Childers, J T (Minnesota U.) ; Conklin, N B (Penn State U.) et al.
The balloon-borne cosmic-ray experiment CREAM-I (Cosmic-Ray Energetics And Mass) completed a successful 42-day flight during the 2004-2005 NASA\/NSF\/NSBF Antarctic expedition. CREAM-I combines an imaging calorimeter with charge detectors and a precision transition radiation detector (TRD). [...]
2007 - 4 p. - Published in : : 2, pp. 187-190 Fulltext: PDF; External link: INDICO
In : 30th International Cosmic Ray Conference, Merida, Mexico, 3 - 11 Jul 2007, pp.187-190
8.
CREAM for high energy composition measurements / Seo, E S ; Ahn, H S ; Allison, P S ; Beatty, J J ; Choi, M J ; Conklin, N B ; Coutu, S ; DuVernois, M A ; Ganel, O ; Kim, K C et al.
Ground-based indirect measurements have shown that the cosmic-ray allparticle spectrum extends many orders of magnitude beyond the energy thought possible for supernova acceleration. Our balloon-borne Cosmic Ray Energetics And Mass (CREAM) experiment is capable of extending direct measurements of cosmic-rays to the supernova energy scale of 1015 eV in a series of Ultra Long Duration Balloon (ULDB) flights. [...]
2003 - 4 p. - Published in : , pp. 2101-2104 Fulltext: PDF; External link: C03-07-31
In : 28th International Cosmic Ray Conferences, v.1-7, Tsukuba, Japan, 31 Jul - 7 Aug 2003, pp.2101-2104
9.
Elemental Spectra from the CREAM-I Flight / Ahn, H.S. (Maryland U.) ; Allison, P.S. (Ohio State U.) ; Bagliesi, M.G. (Siena U. ; INFN, Siena) ; Beatty, J.J. ; Bigongiari, G. (Siena U. ; INFN, Siena) ; Boyle, P. ; Childers, J.T. ; Conklin, N.B. ; Coutu, S. ; DuVernois, M.A. (Minnesota U.) et al.
The Cosmic Ray Energetics And Mass (CREAM) is a balloon-borne experiment designed to measure the composition and energy spectra of cosmic rays of charge Z = 1 to 26 up to an energy of ~ 10^15 eV. CREAM had two successful flights on long-duration balloons (LDB) launched from Mc- Murdo Station, Antarctica, in December 2004 and December 2005. [...]
arXiv:1003.4983.- 2010 - 12 p. - Published in : : 2, pp. 33-36 External link: Preprint
In : 30th International Cosmic Ray Conference, Merida, Mexico, 3 - 11 Jul 2007, pp.33-36
10.
Performance of the CREAM calorimeter in accelerator beam test / Yoon, Y.S. ; Ahn, H.S. ; Bagliesi, M.G. ; Bigongiari, G. ; Ganel, O. ; Han, J.H. ; Hyun, H.J. ; Jeon, J.A. ; Kang, T.G. ; Kim, H.J. et al.
The CREAM calorimeter, designed to measure the spectra of cosmic-ray nuclei from under 1 TeV to 1000 TeV, is a 20 radiation length (X0) deep sampling calorimeter. The calorimeter is comprised of 20 layers of tungsten interleaved with 20 layers of scintillating fiber ribbons, and is preceded by a pair of graphite interaction targets providing about 0.42 proton interaction lengths (\lambda int). [...]
arXiv:1003.4743.- 2005 - 4 p. - Published in : : 8, pp. 371-374 Preprint: PDF; Published version: PDF; External link: Preprint
In : 29th International Cosmic Ray Conference, Pune, India, 3 - 10 Aug 2005, pp.371 (v.8)

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230 Kim, K
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1 Kim, K -T
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35 Kim, K C
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133 Kim, K H
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143 Kim, K J
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1 Kim, K K
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19 Kim, K R
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18 Kim, K.
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9 Kim, K.E.
1 Kim, K.J.
4 Kim, K.S.
7 Kim, K.T.
2 Kim, Kang
2 Kim, Kang-Hwan
17 Kim, Kang-Min
10 Kim, Kang-Tae
4 Kim, Kap-Sung
1 Kim, Kee-Eung
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17 Kim, Kee-Tae
2 Kim, Keeman
2 Kim, Kenny
1 Kim, Keun-Yong
35 Kim, Keun-Young
35 Kim, Keun-young
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3 Kim, Kevin
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2 Kim, Ki Bum
1 Kim, Ki Chol
1 Kim, Ki Hang
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1 Kim, Ki Yeun
6 Kim, Ki Young
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1 Kim, Ki-Nam
8 Kim, Ki-Seok
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1 Kim, Kiho
6 Kim, Kihong
1 Kim, Kihun
5 Kim, Kihwan
1 Kim, Kihyun
4 Kim, Kijung
1 Kim, Kinam
3 Kim, Kiseon
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2 Kim, Kui Young
7 Kim, Kuinam
1 Kim, Kum Bae
1 Kim, Kwang Deok
2 Kim, Kwang Hyeon
1 Kim, Kwang J
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1 Kim, Kwang Seong
2 Kim, Kwang Soon
2 Kim, Kwang-Hyon
16 Kim, Kwang-Je
1 Kim, Kwang-Yul
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1 Kim, Kwangjo
1 Kim, Kwangmoo
20 Kim, Kwangwoo
1 Kim, Kwanpyo
6 Kim, Kye-Ryung
2 Kim, Kyeong Jin
9 Kim, Kyeong-Hun
2 Kim, Kyeongyeon
1 Kim, Kyo-Han
2 Kim, Kyongwan
19 Kim, Kyoohyun
1 Kim, Kyoung Hee
1 Kim, Kyoung Ju
1 Kim, Kyoung Kon
8 Kim, Kyoung Yee
2 Kim, Kyoung-Dae
1 Kim, Kyoung-Kuk
4 Kim, Kyoung-Youm
1 Kim, KyoungJu
1 Kim, Kyoungdae
8 Kim, Kyounghee
3 Kim, Kyoungsun
1 Kim, Kyoungtae
1 Kim, Kyu Bin
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191 Kim, Kyung Eun
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20 Kim, Kyung Kiu
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1 Kim, Kyung Ryul
1 Kim, Kyung Sik
7 Kim, Kyung Sook
1 Kim, Kyung Taec
5 Kim, Kyung-Il
1 Kim, Kyung-Joong
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5 Kim, Kyung-il
3 Kim, KyungDuk
1 Kim, Kyungbaek
3 Kim, Kyungduk
4 Kim, Kyungil
7 Kim, Kyungmin
2 Kim, Kyungmok
2 Kim, Kyungryul
1 Kim, Kyungsub
1 Kim, Kyungsuk
1 Kim, Kyungtae
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2 Kim, Kyungwook
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