Search Results - "Shlegel, V."

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    Low-Temperature Heat Capacity of Zinc Tungstate Single Crystal by Musikhin, A. E., Miller, E. F., Gelfond, N. V., Shlegel’, V. N.

    Published in Russian Journal of Physical Chemistry A (01-09-2024)
    “…The heat capacity of zinc tungstate was determined by relaxation calorimetry in the range of ~2.6–40 K. The heat capacity was extrapolated to zero temperature,…”
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    The [Formula omitted] crystal: a crystal scintillator for dark matter search experiment by Pandey, Indra Raj, Kim, H. J, Lee, H. S, Kim, Y. D, Lee, M. H, Grigorieva, V. D, Shlegel, V. N

    “…A single crystal of [Formula omitted] (NWO) was grown by a low-thermal-gradient Czochralski technique (LTG-CZ). The scintillation properties of the crystal…”
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    Crystal Growth and Heat Capacity of Lithium Molybdate Tungstates by Matskevich, N. I., Shlegel’, V. N., Grigorieva, V. D., Samoshkin, D. A., Stankus, S. V., Semerikova, A. N., Kuznetsov, V. A., Novikov, A. Yu

    Published in Russian journal of inorganic chemistry (01-10-2022)
    “…Single crystals of lithium molybdate tungstates containing 10 and 15 mol % molybdenum were grown by the low-temperature-gradient Czochralski technique. It was…”
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    Thermodynamics of Cesium Molybdate-Based Single Crystals: Standard Enthalpy of Formation, Lattice Enthalpy, and Heat Capacity by Matskevich, N. I., Semerikova, A. N., Trifonov, V. A., Samoshkin, D. A., Chernov, A. A., Stankus, S. V., Luk’yanova, S. A., Shlegel’, V. N., Zaitsev, V. P., Kuznetsov, V. A.

    Published in Russian journal of inorganic chemistry (01-02-2023)
    “…Cs 2 MoO 4 and Li 1.9 Cs 0.1 MoO 4 crystals were grown from melt by the low-thermal-gradient Czochralski technique. The standard formation enthalpy of cesium…”
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    First results on sub-GeV spin-dependent dark matter interactions with $$^{7}$$Li by Abdelhameed, A. H, Angloher, G, Bauer, P, Bento, A, Bertoldo, E, Bucci, C, Canonica, L

    “…In this work, we want to highlight the potential of lithium as a target for spin-dependent dark matter search in cryogenic experiments, with a special focus on…”
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    Development of a Dual Cryogenic Detection System for the Forbidden Non-unique β-Decay Spectrum Study by Kim, H. L., Kim, H. J., Kim, W. T., Kim, Y. D., Kim, Y. H., Lee, M. H., Lee, Y. C., Nagorny, S. S., Shlegel, V. N., So, J.

    “…We present the development of a dual-detector system designed for investigating the spectral shape of forbidden non-unique beta decays. Two PbMoO 4…”
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    Searching for beyond the Standard Model physics using the improved description of 100Mo 2νββ decay spectral shape with CUPID-Mo by Augier, C., Barabash, A. S., Bellini, F., Benato, G., Beretta, M., Bergé, L., Billard, J., Borovlev, Yu. A., Cardani, L., Casali, N., Cazes, A., Celi, E., Chapellier, M., Chiesa, D., Dafinei, I., Danevich, F. A., De Jesus, M., Dixon, T., Dumoulin, L., Eitel, K., Ferri, F., Fujikawa, B. K., Gascon, J., Gironi, L., Giuliani, A., Grigorieva, V. D., Gros, M., Helis, D. L., Huang, H. Z., Huang, R., Imbert, L., Juillard, A., Khalife, H., Kleifges, M., Kobychev, V. V., Kolomensky, Yu. G., Konovalov, S. I., Kotila, J., Loaiza, P., Ma, L., Makarov, E. P., de Marcillac, P., Mariam, R., Marini, L., Marnieros, S., Navick, X. F., Nones, C., Norman, E. B., Olivieri, E., Ouellet, J. L., Pagnanini, L., Pattavina, L., Paul, B., Pavan, M., Peng, H., Pessina, G., Pirro, S., Poda, D. V., Polischuk, O. G., Pozzi, S., Previtali, E., Redon, Th, Rojas, A., Rozov, S., Sanglard, V., Scarpaci, J. A., Schmidt, B., Shen, Y., Shlegel, V. N., Šimkovic, F., Singh, V., Tomei, C., Tretyak, V. I., Umatov, V. I., Vagneron, L., Velázquez, M., Ware, B., Welliver, B., Winslow, L., Xue, M., Yakushev, E., Zarytskyy, M., Zolotarova, A. S.

    “…The current experiments searching for neutrinoless double- β ( 0 ν β β ) decay also collect large statistics of Standard Model allowed two-neutrino double- β (…”
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    A next-generation neutrinoless double beta decay experiment based on ZnMoO4 scintillating bolometers by Beeman, J.W., Danevich, F.A., Degoda, V.Ya, Galashov, E.N., Giuliani, A., Kobychev, V.V., Mancuso, M., Marnieros, S., Nones, C., Olivieri, E., Pessina, G., Rusconi, C., Shlegel, V.N., Tretyak, V.I., Vasiliev, Ya.V.

    Published in Physics letters. B (04-04-2012)
    “…The search for neutrinoless double β decay probes lepton number conservation with high sensitivity and investigates the neutrino nature and mass scale…”
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    GROWTH AND SPECTROSCOPIC INVESTIGATIONS OF Na2W2O7 SINGLE CRYSTALS DOPED WITH CERIUM AND CHROMIUM IONS by Grigorieva, V. D., Rakhmanova, M. I., Kasimkin, P. V., Shlegel, V. N.

    Published in Journal of structural chemistry (2022)
    “…Alkaline tungstate crystals are promising scintillation materials for rare events search, especially for WIMP investigations. Na 2 W 2 O 7 single crystals…”
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    The electronic structure of Pb2MoO5: First-principles DFT calculations and X-ray spectroscopy measurements by Khyzhun, O.Y., Bekenev, V.L., Atuchin, V.V., Pokrovsky, L.D., Shlegel, V.N., Ivannikova, N.V.

    Published in Materials & design (05-09-2016)
    “…The electronic structure of lanarkite-type Pb2MoO5 was explored by experimental and theoretical methods. The XPS and XES measurements were carried out at the…”
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    Formation of Na2Mo2XW2(1−X)O7 Solid Solutions and Derived Phase Diagram by Bondareva, A. F., Artemyeva, M. A., Kuznetsov, A. B., Ryadun, A. A., Grigorieva, V. D., Fedorenko, A. D., Shlegel, V. N., Musikhin, A. E.

    Published in Journal of structural chemistry (01-04-2024)
    “…Na 2 Mo 2 x W 2(1− x ) O 7 ( x  = 0…1 with step 0.1) compositions were obtained by solid-state synthesis and spontaneous crystallization. The sample series…”
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    A Study on PbMoO4 Phonon-Scintillation Detection with MMC Readouts for a Neutrinoless Double Beta Decay Search by Kim, H. L., So, J. H., Kim, Y. H., Kim, H. J., Nagorny, S. S., Kim, S. R., Kim, Y. D., Lee, M. H., Shlegel, V. N.

    “…The advanced Mo-based rare process experiment (AMoRE) is an international project searching for the neutrinoless double beta ( 0 ν β β ) decay of 100 Mo using…”
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    Production and characterisation of a PbMoO4 cryogenic detector from archaeological Pb by Pattavina, L., Nagorny, S., Nisi, S., Pagnanini, L., Pessina, G., Pirro, S., Rusconi, C., Schäffner, K., Shlegel, V. N., Zhdankov, V. N.

    “…We operated a PbMoO 4 scintillating cryogenic detector of 570 g, produced with archaeological lead. This compound features excellent low temperature…”
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    The CUPID-Mo experiment for neutrinoless double-beta decay: performance and prospects by Armengaud, E., Augier, C., Barabash, A. S., Bellini, F., Benato, G., Benoît, A., Beretta, M., Bergé, L., Billard, J., Borovlev, Yu. A., Bourgeois, Ch, Briere, M., Brudanin, V. B., Camus, P., Cardani, L., Casali, N., Cazes, A., Chapellier, M., Charlieux, F., de Combarieu, M., Dafinei, I., Danevich, F. A., De Jesus, M., Dumoulin, L., Eitel, K., Elkhoury, E., Ferri, F., Fujikawa, B. K., Gascon, J., Gironi, L., Giuliani, A., Grigorieva, V. D., Gros, M., Guerard, E., Helis, D. L., Huang, H. Z., Huang, R., Johnston, J., Juillard, A., Khalife, H., Kleifges, M., Kobychev, V. V., Kolomensky, Yu. G., Konovalov, S. I., Leder, A., Loaiza, P., Ma, L., Makarov, E. P., de Marcillac, P., Marini, L., Marnieros, S., Misiak, D., Navick, X. -F., Nones, C., Novati, V., Olivieri, E., Ouellet, J. L., Pagnanini, L., Pari, P., Pattavina, L., Paul, B., Pavan, M., Peng, H., Pessina, G., Pirro, S., Poda, D. V., Polischuk, O. G., Previtali, E., Redon, Th, Rozov, S., Rusconi, C., Sanglard, V., Schäffner, K., Schmidt, B., Shen, Y., Shlegel, V. N., Siebenborn, B., Singh, V., Sorbino, S., Tomei, C., Tretyak, V. I., Umatov, V. I., Vagneron, L., Velázquez, M., Weber, M., Welliver, B., Winslow, L., Xue, M., Yakushev, E., Zolotarova, A. S.

    “…CUPID-Mo is a bolometric experiment to search for neutrinoless double-beta decay ( 0 ν β β ) of 100 Mo . In this article, we detail the CUPID-Mo detector…”
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    Trap centers in molybdates by Spassky, D.A., Nagirnyi, V., Mikhailin, V.V., Savon, A.E., Belsky, A.N., Laguta, V.V., Buryi, M., Galashov, E.N., Shlegel, V.N., Voronina, I.S., Zadneprovski, B.I.

    Published in Optical materials (01-10-2013)
    “…•Activation energies and frequency factors of traps were determined in molybdates.•Influence of charge carriers trapping on luminescence properties is…”
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