$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Cryogenic Heat–Light Detection System for 1-cm³ Scintillating Crystals

IEEE transactions on nuclear science, v.65 no.2, 2018년, pp.766 - 770  

Kim, H. L. (Institute for Basic Science, Center for Underground Physics, Daejeon, South Korea) ,  Kim, G. B. (Institute for Basic Science, Center for Underground Physics, Daejeon, South Korea) ,  Kim, H. J. (Institute for Basic Science, Center for Underground Physics, Daejeon, South Korea) ,  Kim, I. (Institute for Basic Science, Center for Underground Physics, Daejeon, South Korea) ,  Kim, Y. H. (Institute for Basic Science, Center for Underground Physics, Daejeon, South Korea) ,  Lee, H. J. (Institute for Basic Science, Center for Underground Physics, Daejeon, South Korea) ,  Oh, S. Y. (Institute for Basic Science, Center for Underground Physics, Daejeon, South Korea) ,  So, J. H. (Institute for Basic Science, Center for Underground Physics, Daejeon, South Korea)

Abstract AI-Helper 아이콘AI-Helper

We have developed a cryogenic heat and light detection system to investigate phonon and scintillation properties of scintillating crystals for rare event search experiments. The detector setup is designed to utilize a $1 \times 1\times 1$ cm3 scintillating crystal as a target material. A ...

참고문헌 (29)

  1. Porst, J.-P., Bandler, S. R., Adams, J. S., Balvin, M. A., Busch, S. E., Eckart, M. E., Kelley, R. L., Kilbourne, C. A., Lee, S. J., Nagler, P. C., Porter, F. S., Sadleir, J. E., Seidel, G. M., Smith, S. J., Stevenson, T. R.. Characterization and Performance of Magnetic Calorimeters for Applications in X-ray Spectroscopy. Journal of low temperature physics, vol.176, no.5, 617-623.

  2. Ranitzsch, P.C., Kempf, S., Pabinger, A., Pies, C., Porst, J.-P., Schafer, S., Fleischmann, A., Gastaldo, L., Enss, C., Jang, Y.S., Kim, I.H., Kim, M.S., Kim, Y.H., Lee, J.S., Lee, K.B., Lee, M.K., Lee, S.J., Yoon, W.S., Yuryev, Y.N.. Development of cryogenic alpha spectrometers using metallic magnetic calorimeters. Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment, vol.652, no.1, 299-301.

  3. Yoon, W.S., Kang, C.S., Kim, S.R., Kim, G.B., Lee, H.J., Lee, M.K., Lee, J.H., So, J.H., Kim, Y.H.. Development of a high resolution alpha spectrometer using a magnetic calorimeter. Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment, vol.784, 143-146.

  4. Lee, Sang-Jun, Lee, Min Kyu, Jang, Yong Sic, Kim, Il Hwan, Kim, Sun Kee, Lee, June Sur, Lee, Kyoung Beom, Lee, Young Hwa, Kim, Yong-Hamb. Cryogenic measurement of alpha decay in a 4π absorber. Journal of physics G, Nuclear and particle physics, vol.37, no.5, 055103-.

  5. Jang, Y.S., Kim, G.B., Kim, K.J., Kim, M.S., Lee, H.J., Lee, J.S., Lee, K.B., Lee, M.K., Lee, S.J., Ri, H.C., Yoon, W.S., Yuryev, Y.N., Kim, Y.H.. Development of decay energy spectroscopy using low temperature detectors. Applied radiation and isotopes : including data, instrumentation and methods for use in agriculture, industry, and medicine, vol.70, no.9, 2255-2259.

  6. Loidl, M., Rodrigues, M., Le-Bret, C., Mougeot, X.. Beta spectrometry with metallic magnetic calorimeters. Applied radiation and isotopes : including data, instrumentation and methods for use in agriculture, industry, and medicine, vol.87, 302-305.

  7. Lee, J. Y., Alenkov, V., Ali, L., Beyer, J., Bibi, R., Boiko, R. S., Boonin, K., Buzanov, O., Chanthima, N., Cheoun, M. K., Chernyak, D. M., Choi, J., Choi, S., Danevich, F. A., Djamal, M., Drung, D., Enss, C., Fleischmann, A., Gangapshev, A., Gastaldo, L., Gavriljuk, Y., Gezhaev, A., Gurentsov, V., Hahn, I. S., Jeon, E. J., Jo, H. S., Joo, H., Kaewkhao, J., Kang, C. S., Kang, S. J., Kang, W. G., Karki, S., Kazalov, V., Khan, S., Khanbekov, N., Kim, G. B., Kim, H. J., Kim, H. L., Kim, H. O., Kim, I., Kim, J. H., Kim, K., Kim, S. K., Kim, S. R., Kim, S. Y., Kim, Y. D., Kim, Y. H., Kirdsiri, K., Ko, Y. J., Kobychev, V. V., Kornoukhov, V., Kuzminov, V., Lee, H. J., Lee, H. S., Lee, J. H., Lee, J. M., Lee, K. B., Lee, M. H., Lee, M. K., Leonard, D. S., Li, J., Li, J., Li, Y. J., Limkitjaroenporn, P., Ma, K. J., Mineev, O., Mokina, V. M., Olsen, S., Panasenko, S., Pandey, I., Park, H. K., Park, H. S., Park, K. S., Poda. A Study of Radioactive Contamination of $^{\text{40}}\text{Ca}^{\text{100}}\text{MoO}_{\text{4}}$ Crystals for the AMoRE Experiment. IEEE transactions on nuclear science, vol.63, no.2, 543-547.

  8. Solskii, I.M., Sugak, D.Yu., Vakiv, M.M.. Growing Large Size Complex Oxide Single Crystals by Czochralski Technique for Electronic Devices. Acta physica Polonica, A, vol.124, no.2, 314-320.

  9. Kim, Y.H, Eguchi, H, Enss, C, Huang, Y.H, Lanou, R.E, Maris, H.J, Mocharnuk-Macchia, A.N, Seidel, G.M, Sethumadhavan, B, Yao, W. Measurements and modeling of the thermal properties of a calorimeter having a sapphire absorber. Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment, vol.520, no.1, 208-211.

  10. Yoon, W. S., Kim, G. B., Lee, H. J., Lee, J. Y., Lee, J. H., Jang, Y. S., Lee, S. J., Lee, M. K., Kim, Y. H.. Fabrication of Metallic Magnetic Calorimeter for Radionuclide Analysis. Journal of low temperature physics, vol.176, no.5, 644-649.

  11. Kang, C S, Jeon, J A, Jo, H S, Kim, G B, Kim, H L, Kim, I, Kim, S R, Kim, Y H, Kwon, D H, Lee, C, Lee, H J, Lee, M K, Lee, S H, Oh, S Y, So, J H, Yoon, Y S. MMC-based low-temperature detector system of the AMoRE-Pilot experiment. Superconductor science & technology, vol.30, no.8, 084011-.

  12. Artusa, D.R., Avignone III, F.T., Beeman III, J.W., Dafinei III, I., Dumoulin III, L., Ge III, Z., Giuliani III, A., Gotti III, C., de Marcillac III, P., Marnieros III, S., Nagorny III, S., Nisi III, S., Nones III, C., Norman III, E.B., Novati III, V., Olivieri III, E., Orlandi III, D., Pagnanini III, L., Pattavina III, L., Pessina III, G., Pirro III, S., Poda III, D.V., Rusconi III, C., Schäffner III, K., Scielzo III, N.D., Zhu III, Y.. Enriched TeO2 bolometers with active particle discrimination: Towards the CUPID experiment. Physics letters: B, vol.767, 321-329.

  13. Oh, S Y, Kim, G B, Kim, H L, Kim, I, Kim, S R, Lee, H J, Lee, M K, Kim, Y H. Protocol for maximising light signal of metallic magnetic calorimeters for neutrinoless double beta decay search. Superconductor science & technology, vol.30, no.8, 084005-.

  14. Alfonso, K., Artusa, D. R., Avignone, F. T., Azzolini, O., Balata, M., Banks, T. I., Bari, G., Beeman, J. W., Bellini, F., Bersani, A., Biassoni, M., Brofferio, C., Bucci, C., Caminata, A., Canonica, L., Cao, X. G., Capelli, S., Cappelli, L., Carbone, L., Cardani, L., Casali, N., Cassina, L., Chiesa, D., Chott, N., Clemenza, M., Copello, S., Cosmelli, C., Cremonesi, O., Creswick, R. J., Cushman, J. S., Dafinei, I., Dally, A., Dell’Oro, S., Deninno, M. M., Di Domizio, S., Di Vacri, M. L., Drobizhev, A., Ejzak, L., Fang, D. Q., Faverzani, M., Fernandes, G., Ferri, E., Ferroni, F., Fiorini, E., Freedman, S. J., Fujikawa, B. K., Giachero, A., Gironi, L., Giuliani, A., Gorla, P., Gotti, C., Gutierrez, T. D., Haller, E. E., Han, K., Hansen, E., Heeger, K. M., Hennings-Yeomans, R., Hickerson, K. P., Huang, H. Z., Kadel, R., Keppel, G., Kolomensky, Yu. G., Lim, K. E., Liu, X., Ma, Y. G., Maino, M., Martinez, M., Maruyama, R. . Search for Neutrinoless Double-Beta Decay of $ \tensor_{}^{130}{\mathrm{Te}}{_{\mathrm{Te}}}$ with CUORE-0. Physical review letters, vol.115, no.10, 102502-.

  15. Bekker, T.B., Coron, N., Danevich, F.A., Degoda, V.Ya., Giuliani, A., Grigorieva, V.D., Ivannikova, N.V., Mancuso, M., de Marcillac, P., Moroz, I.M., Nones, C., Olivieri, E., Pessina, G., Poda, D.V., Shlegel, V.N., Tretyak, V.I., Velazquez, M.. Aboveground test of an advanced Li2MoO4 scintillating bolometer to search for neutrinoless double beta decay of 100Mo. Astroparticle physics, vol.72, 38-45.

  16. Technical design report for the AMoRE $0\nu \beta \beta $ decay search experiment alenkov 2015 

  17. Beeman, J. W., Bellini, F., Benetti, P., Cardani, L., Casali, N., Chiesa, D., Clemenza, M., Dafinei, I., Di Domizio, S., Ferroni, F., Gironi, L., Giuliani, A., Gotti, C., Maino, M., Nagorny, S. S., Nisi, S., Nones, C., Pagnanini, L., Pattavina, L., Pessina, G., Piperno, G., Pirro, S., Previtali, E., Rusconi, C., Schäffner, K., Tomei, C., Vignati, M.. The LUCIFER Project: Achievements and Near Future Prospects. Journal of low temperature physics, vol.184, no.3, 852-858.

  18. Lee, S.J., Choi, J.H., Danevich, F.A., Jang, Y.S., Kang, W.G., Khanbekov, N., Kim, H.J., Kim, I.H., Kim, S.C., Kim, S.K., Kim, Y.D., Kim, Y.H., Kobychev, V.V., Kornoukhov, V.N., Lee, J.I., Lee, J.S., Lee, K.B., Lee, M.K., Lee, Y.H., Myung, S.S., So, J.H., Tretyak, V.I., Yuryev, Y.. The development of a cryogenic detector with CaMoO4 crystals for neutrinoless double beta decay search. Astroparticle physics, vol.34, no.9, 732-737.

  19. Gironi, L, Arnaboldi, C, Beeman, J W, Cremonesi, O, Danevich, F A, Degoda, V Ya, Ivleva, L I, Nagornaya, L L, Pavan, M, Pessina, G, Pirro, S, Tretyak, V I, Tupitsyna, I A. Performance of ZnMoO4 crystal as cryogenic scintillating bolometer to search for double beta decay of molybdenum. Journal of instrumentation an IOP and SISSA journal, vol.5, no.11, P11007-P11007.

  20. Kim, G.B., Choi, J.H., Jo, H.S., Kang, C.S., Kim, H.L., Kim, I., Kim, S.R., Kim, Y.H., Lee, C., Lee, H.J., Lee, M.K., Li, J., Oh, S.Y., So, J.H.. Novel measurement method of heat and light detection for neutrinoless double beta decay. Astroparticle physics, vol.91, 105-112.

  21. Enss, C.; Fleischmann, A. etc. "Metallic Magnetic Calorimeters for Particle Detection." Journal of low temperature physics, v.121 no.3/4 (2000), pp. 137-176, doi:10.1023/A:1004863823166.

  22. Cryogenic Particle Detection enss 2005 10.1007/b12169 99 

  23. Kim, H J, Annenkov, A N, Boiko, R S, Buzanov, O A, Chernyak, D M, Cho, J H, Danevich, F A, Dossovitsky, A E, Rooh, Gul, Kang, U K, Kim, M J, Kim, S C, Kim, S K, Kim, Y D, Kobychev, V V, Kornoukhov, V N, Kosmyna, M B, Lee, S J, Lee, J I, Lee, J H, Myung, S S, Nazarenko, B P, Nikolaiko, A S, Podviyanuk, R B, Puzikov, V M, Shekhovtsov, A N, So, J H, Solskii, I, Tretyak, V I, Veresnikova, A V. Neutrino-Less Double Beta Decay Experiment Using Ca $^{100}$ MoO $_{4}$ Scintillation Crystals. IEEE transactions on nuclear science, vol.57, no.3, 1475-1480.

  24. Kim, G. B., Choi, S., Danevich, F. A., Fleischmann, A., Kang, C. S., Kim, H. J., Kim, S. R., Kim, Y. D., Kim, Y. H., Kornoukhov, V. A., Lee, H. J., Lee, J. H., Lee, M. K., Lee, S. J., So, J. H., Yoon, W. S.. A CaMoO4Crystal Low Temperature Detector for the AMoRE Neutrinoless Double Beta Decay Search. Advances in high energy physics, vol.2015, 1-7.

  25. Zhang, X., Lin, J., Mikhailik, V. B., Kraus, H.. Studies of scintillation properties of CaMoO4 at millikelvin temperatures. Applied physics letters, vol.106, no.24, 241904-.

  26. Gironi, L.. Scintillating bolometers for Double Beta Decay search. Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment, vol.617, no.1, 478-481.

  27. Kim, I, Jo, H S, Kang, C S, Kim, G B, Kim, H L, Kim, S R, Kim, Y H, Lee, H J, Lee, J H, Lee, M K, Oh, S Y, So, J H. Application of metallic magnetic calorimeter in rare event search. Superconductor science & technology, vol.30, no.9, 094005-.

  28. Arnaboldi, C., Brofferio, C., Cremonesi, O., Gironi, L., Pavan, M., Pessina, G., Pirro, S., Previtali, E.. A novel technique of particle identification with bolometric detectors. Astroparticle physics, vol.34, no.11, 797-804.

  29. Beeman, J W, Bellini, F, Cardani, L, Casali, N, Dafinei, I, Domizio, S Di, Ferroni, F, Gironi, L, Giuliani, A, Nagorny, S, Orio, F, Pattavina, L, Pessina, G, Piperno, G, Pirro, S, Previtali, E, Rusconi, C, Tomei, C, Vignati, M. Performances of a large mass ZnSe bolometer to search for rare events. Journal of instrumentation an IOP and SISSA journal, vol.8, no.5, P05021-P05021.

LOADING...
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로