Journal of Synthetic Crystals, Volume. 50, Issue 10, 1892(2021)

Preparation and Characterization of CdMnTe Crystal Nuclear Radiation Detector by Te Solvent Bridgman Method

DU Yuanyuan1、*, JIANG Weichun1, CHENG Xiao2, and LUO Tao1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    References(23)

    [1] [1] EISEN Y, SHOR A. CdTe and CdZnTe materials for room-temperature X-ray and gamma ray detectors[J]. Journal of Crystal Growth, 1998, 184/185: 1302-1312.

    [2] [2] GU Y X, RONG C C, XU Y D, et al. Effects of Te inclusions on charge-carrier transport properties in CdZnTe radiation detectors[J]. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions With Materials and Atoms, 2015, 343: 89-93.

    [3] [3] OWENS A, PEACOCK A. Compound semiconductor radiation detectors[J]. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 2004, 531(1/2): 18-37.

    [4] [4] LISIANSKY M, BERNER A, KORCHNOY V. Quality improvement of CdZnTe single crystal by ultrasound processing[J]. Journal of Crystal Growth, 2017, 467: 54-60.

    [5] [5] BOLOTNIKOV A E, CAMARDA G S, CUI Y, et al. Characterization and evaluation of extended defects in CZT crystals for gamma-ray detectors[J]. Journal of Crystal Growth, 2013, 379: 46-56.

    [6] [6] NAN R H, JIE W Q, ZHA G Q, et al. Thermally stimulated current spectroscopy applied on defect characterization in semi-insulating Cd0.9Zn0.1Te[J]. Journal of Crystal Growth, 2012, 361: 25-29.

    [7] [7] MYCIELSKI A, BURGER A, SOWINSKA M, et al. Is the (Cd, Mn)Te crystal a prospective material for X-ray and γ-ray detectors?[J]. Physica Status Solidi (c), 2005, 2(5): 1578-1585.

    [8] [8] HOSSAIN A, CUI Y, BOLOTNIKOV A E, et al. Vanadium-doped cadmium manganese telluride (Cd1-xMnxTe) crystals as X- and gamma-ray detectors[J]. Journal of Electronic Materials, 2009, 38(8): 1593-1599.

    [9] [9] MCGREGOR D S, HERMON H. Room-temperature compound semiconductor radiation detectors[J]. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 1997, 395(1): 101-124.

    [10] [10] ZHANG J J, JIE W Q, WANG L H, et al. Twins in CdMnTe single crystals grown by Bridgman method[J]. Crystal Research and Technology, 2009, 45(1): 7-12.

    [11] [11] ZHANG J J, JIE W Q, WANG T, et al. Growth and characterization of In doped Cd0.8Mn0.2Te single crystal[J]. Journal of Crystal Growth, 2007, 306(1): 33-38.

    [13] [13] LUAN L J, ZHANG J W, WANG T, et al. Vanadium doped Cd0.9Mn0.1Te crystal and its optical and electronic properties[J]. Journal of Crystal Growth, 2017, 459: 124-128.

    [14] [14] DU Y Y, JIE W Q, WANG T, et al. Solution growth of In-doped CdMnTe crystals by the vertical Bridgman method with the ACRT technique[J]. Journal of Crystal Growth, 2012, 355(1): 33-37.

    [16] [16] BURGER A, CHATTOPADHYAY K, CHEN H, et al. Crystal growth, fabrication and evaluation of cadmium manganese telluride gamma ray detectors[J]. Journal of Crystal Growth, 1999, 198/199: 872-876.

    [17] [17] KIM K H, CHO S H, SUH J H, et al. Gamma-ray response of semi-insulating CdMnTe crystals[J]. IEEE Transactions on Nuclear Science, 2009, 56(3): 858-862.

    [18] [18] LIANG W, QIN K F, ZHANG J J, et al. THM growth of (Cd, Mn)Te single crystal with the source ingot synthesized by VB method[J]. Journal of Crystal Growth, 2015, 419: 123-127.

    [19] [19] LUAN L J, LV H H, GAO L, et al. Preparation and properties of hemispherical CdMnTe nuclear radiation detectors[J]. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions With Materials and Atoms, 2020, 471: 42-47.

    [20] [20] WEIL R, YAMPOLSKY O, FURDYNA J K, et al. Some optical and thermal properties of Cd0.9Mn0.1Te[J]. Journal of Applied Physics, 1995, 78(10): 6330-6331.

    [22] [22] KNOLL G F. Radiation detection and measurement [M]. New York: John Wiley & Sons, Ltd, 1999: 29-55.

    [23] [23] WEN X L, ZHANG J J, MAO Y F, et al. Investigation of point defects and electrical properties of the In-doped CdMnTe grown by traveling heater method[J]. Journal of Crystal Growth, 2017, 463: 79-85.

    [27] [27] SZELES C. Advances in the crystal growth and device fabrication technology of CdZnTe room temperature radiation detectors[J]. IEEE Transactions on Nuclear Science, 2004, 51(3): 1242-1249.

    [28] [28] ZENG H M, WEI T C, WANG J. Linearity enhancement design of a 16-channel low-noise front-end readout ASIC for CdZnTe detectors[J]. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 2017, 847: 93-98.

    [29] [29] DU M H, TAKENAKA H, SINGH D J. Carrier compensation in semi-insulating CdTe: first-principles calculations[J]. Physical Review B, 2008, 77(9): 094122.

    CLP Journals

    [1] YANG Yang, LIU Zhirong. Research Progress of Single Crystal Growth Methods for Nuclear Radiation Detection[J]. Journal of Synthetic Crystals, 2022, 51(7): 1284

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    DU Yuanyuan, JIANG Weichun, CHENG Xiao, LUO Tao. Preparation and Characterization of CdMnTe Crystal Nuclear Radiation Detector by Te Solvent Bridgman Method[J]. Journal of Synthetic Crystals, 2021, 50(10): 1892

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    Paper Information

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    Received: Aug. 31, 2021

    Accepted: --

    Published Online: Dec. 6, 2021

    The Author Email: DU Yuanyuan (duyuanyuan@ihep.ac.cn)

    DOI:

    CSTR:32186.14.

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