Search Results - "LATTERY, M"

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  1. 1

    Quantitative analysis and optimization of magnetization precession initiated by ultrafast optical pulses by Lattery, Dustin M., Zhu, Jie, Zhang, Delin, Wang, Jian-Ping, Crowell, Paul A., Wang, Xiaojia

    Published in Applied physics letters (15-10-2018)
    “…Magnetic storage and magnetic memory have recently shifted towards the use of magnetic thin films with large perpendicular magnetic anisotropy (PMA) to…”
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  2. 2

    Time-Resolved Magneto-Optical Kerr Effect of Magnetic Thin Films for Ultrafast Thermal Characterization by Chen, Jun-Yang, Zhu, Jie, Zhang, Delin, Lattery, Dustin M, Li, Mo, Wang, Jian-Ping, Wang, Xiaojia

    Published in The journal of physical chemistry letters (07-07-2016)
    “…Thermomagnetic and magneto-optical effects are two fundamental but unique phenomena existing in magnetic materials. In this work, we demonstrate ultrafast…”
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  3. 3

    Low Gilbert Damping Constant in Perpendicularly Magnetized W/CoFeB/MgO Films with High Thermal Stability by Lattery, Dustin M., Zhang, Delin, Zhu, Jie, Hang, Xudong, Wang, Jian-Ping, Wang, Xiaojia

    Published in Scientific reports (06-09-2018)
    “…Perpendicular magnetic materials with low damping constant and high thermal stability have great potential for realizing high-density, non-volatile, and…”
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  4. 4

    The Ultrafast Laser Pump-Probe Technique for Thermal Characterization of Materials With Micro/Nanostructures by Zhu, Jie, Wu, Xuewang, Lattery, Dustin M., Zheng, Wei, Wang, Xiaojia

    “…Advances in nano-electronics, nano-optics, energy harvesting materials, and nanoparticle-based photothermal therapies are motivating studies of the thermal…”
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  5. 5

    Effective Radiative Properties of Tilted Metallic Nanorod Arrays Considering Polarization Coupling by Lattery, Dustin M., Kim, Mingeon, Choi, Jongin, Lee, Bong Jae, Wang, Xiaojia

    Published in Scientific reports (17-09-2018)
    “…With the advent of new nanomanufacturing techniques has come the rise of the field of nanophotonics and an increased need to determine optical properties of…”
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  6. 6

    High-frequency magnetoacoustic resonance through strain-spin coupling in perpendicular magnetic multilayers by Zhang, De-Lin, Zhu, Jie, Qu, Tao, Lattery, Dustin M., Victora, R. H., Wang, Xiaojia, Wang, Jian-Ping

    Published in Science advances (01-09-2020)
    “…Time-resolved magnetoacoustic resonance demonstrates strong magnon-phonon coupling at extremely high frequency. It is desirable to experimentally demonstrate…”
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    PANDA Phase One: PANDA collaboration by Liu, Z., Liu, B., Shen, X., Zhao, J., Alkakhi, W., Bökelmann, S., Frech, J., Fritsch, M., Hagdorn, R., Keshk, I., Küßner, M., Li, J., Maldaner, S., Pflüger, S., Triffterer, T., Chauhan, V., Hammann, C., Schmidt, C., Pantea, D., Filo, G., Korcyl, K., Lebiedowicz, P., Pysz, K., Szczurek, A., Firlej, M., Swientek, K., Terlecki, P., Korcyl, G., Malige, A., Nowakowski, K., Schmitt, L., Dzhygadlo, R., Gerhardt, A., Karabowicz, R., Täschner, A., Alexeev, G., Koshurnikov, E. K., Lobanov, Y. Yu, Olshevskiy, A. G., Piskun, A. A., Shimanski, S., Skachkova, A. N., Tokmenin, V., Zhuravlev, N. I., Nerling, F., Diehl, S., Dormenev, V., Düren, M., Erlen, T., Kripko, A., Metag, V., Novotny, R., Kalita, K., Tavukoglu, Z., Gillitzer, A., Goldenbaum, F., Grunwald, D., Isaksson, L., Lauth, W., Schlimme, S., Thiel, M., Ehret, A., Noll, O., Chernetsky, V., Fedorets, P., Kantsyrev, A., Boukharov, A., Malyshev, O., Hüsken, N., Yan, Y., Kuyanov, I. A., Boca, G., Finger, M., Finger, M., Derevschikov, A., Ferapontov, V., Goncharenko, Y., Levin, A., Morozov, D., Nogach, L., Shein, I., Yakutin, A., Belostotski, S., Izotov, A., Miklukho, O., Wölbing, D., Godre, S., Crede, V., Eugenio, P., Calvo, D., Wheadon, R., Iazzi, F., Kupsc, A., Wolke, M., Chlopik, A., Zwieglinski, B., Bühler, P., Marton, J., Fischer, C. S., Haidenbauer, J.

    “…The Facility for Antiproton and Ion Research (FAIR) in Darmstadt, Germany, provides unique possibilities for a new generation of hadron-, nuclear- and atomic…”
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  9. 9

    The potential of Λ and Ξ- studies with PANDA at FAIR by Steinacher, M., Walford, N., Cao, N., Liu, B., Frech, J., Fritsch, M., Küßner, M., Mustafa, A., Pelizäus, M., Richter, M., Denizli, H., Schmidt, C., Pantea, D., Domagala, M., Lebiedowicz, P., Pysz, K., Moskal, P., Rathod, N., Abazov, V., Alexeev, G., Piskun, A. A., Samartsev, A., Quin, N., Xiao, T., Ali, A., Belousov, A., Pugach, M., Bianchi, N., Bettner, Y., Hofmann, J., Kegel, S., Metag, V., Nanova, M., Peter, M., Schmidt, M., Straube, M., Zaunick, H. G., Tomasi-Gustafsson, E., Glazier, D., Seitz, B., Kappert, R., Kunze, M., Derichs, A., Dosdall, R., Jokhovets, L., Kannika, J., Rosenthal, E., Serdyuk, V., Li, H., Liang, Y., Corell, O., Hoek, M., Merkel, H., Thiel, M., Zambrana, M., Kliemt, R., Motzko, C., Rodríguez Piñeiro, D., Balashoff, A., Chernetsky, V., Fedorets, P., Kirin, D. Y., Panjushkin, V., Brand, P., Kobdaj, C., Limphirat, A., Nasawad, T., Pongampai, S., Zhang, X., Kravchenko, E. A., Blinov, V. E., Tikhonov, Y., Hunter, G., Kveton, A., Prochazka, I., Slunecka, M., Marcisovsky, M., Neue, G., Tomasek, M., Ferapontov, V., Levin, A., Morozov, D., Nogach, L., Vasiliev, A., Roy, U., Fedotov, G., Miklukho, O., Zhdanov, A., Lersch, D., Calvo, D., Filippi, A., Mazza, G., Johansson, T., Kupsc, A., Schönning, K., Chlopik, A., Kesik, G., Kratochwil, N., Marton, J., Widmann, E.

    “…The antiproton experiment PANDA at FAIR is designed to bring hadron physics to a new level in terms of scope, precision and accuracy. In this work, its unique…”
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    Study of excited Ξ baryons with the P¯ANDA detector by Liu, Z., Shen, X., Alkakhi, W., Bökelmann, S., Fritsch, M., Keshk, I., Küßner, M., Li, J., Maldaner, S., Pflüger, S., Chauhan, V., Hammann, C., Schmidt, C., Pantea, D., Domagala, M., Lisowski, E., Lebiedowicz, P., Szczurek, A., Moron, J., Terlecki, P., Korcyl, G., Moskal, P., Przygoda, W., Schepers, G., Abazov, V., Efremov, A., Golovanov, G., Shimanski, S., Skachkov, N. B., Strokovsky, E. A., Uzhinsky, V., Vodopianov, A., Watts, D., Lehmann, A., Lucherini, V., Bracco, G., Diehl, S., Hayrapetyan, A., Nanova, M., Orsich, P., Kappert, R., Peng, H., Kunze, M., Azizi, K., Esmail, W., Kulessa, P., Prasuhn, D., Pütz, J., Schadmand, S., Schmitz, R., Sefzick, T., Stockmanns, T., Veretennikov, D., Wintz, P., Zhou, Y., Cao, X., Liang, Y., Isaksson, L., Distler, M., Merkel, H., Kliemt, R., Noll, O., Piñeiro, D. Rodríguez, Steinen, M., Korzhik, M., Dolgolenko, A., Luschevskaya, E., Balashoff, A., Brand, P., Bumrungkoh, D., Limphirat, A., Manasatitpong, K., Nasawad, T., Pongampai, S., Pivovarov, S., Blinov, A. E., Kononov, S., Finger, Jr, M., Pesek, M., Jary, V., Derevschikov, A., Ferapontov, V., Goncharenko, Y., Levin, A., Morozov, D., Nogach, L., Shein, I., Yakutin, A., Belostotski, S., Miklukho, O., Wölbing, D., Calvo, D., Wheadon, R., Bussa, M. P., Spataro, S., Akram, A., Calen, H., Kupsc, A., Schönning, K., Zwieglinski, B.

    “…The study of baryon excitation spectra provides insight into the inner structure of baryons. So far, most of the world-wide efforts have been directed towards…”
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  12. 12

    Feasibility studies for the measurement of time-like proton electromagnetic form factors from p¯p→μ+μ- at P¯ANDA at FAIR by Steinacher, M., Walford, N., Cao, N., Liu, Z., Liu, B., Freudenreich, V., Heinsius, F. H., Maldaner, S., Pitka, A., Wenzel, C., Denizli, H., Yilmaz, A., Beck, R., Rossbach, M., Urban, M., Bianconi, A., Lisowski, F., Schäfer, W., Moron, J., Korcyl, G., Lalik, R., Moskal, P., Smyrski, J., Böhm, R., Schmitt, L., Deppe, H., Saito, T., Schwiening, J., Täschner, A., Abazov, V., Arefiev, V. A., Zhuravlev, N. I., Branford, D., Watts, D., Himmelreich, M., Nerling, F., Belousov, A., Bianchi, N., Lucherini, V., Diehl, S., Erlen, T., Föhl, K., Köseoglu, I., Kripko, A., Stenzel, H., Loehner, H., Schakel, P., Huang, G., Kunze, M., Azizi, K., Tavukoglu, Z., Grunwald, D., Kulessa, P., Schmitz, R., Stockmanns, T., Veretennikov, D., Zhou, Y., Ma, X., Merkel, H., Zambrana, M., Capozza, L., Klasen, R., Piñeiro, D. Rodríguez, Schupp, F., Wolff, S., Kazlou, D., Korzhik, M., Stavinskiy, A. V., Balashoff, A., Kumawat, H., Bonaventura, D., Kellers, J., Vestrick, S., Khosonthongkee, K., Srisawad, P., Zhang, X., Blinov, V. E., Lattery, M., Boca, G., Duda, D., Slunecka, M., Volf, M., Korchak, O., Tomasek, L., Minaev, N., Yabsley, B., Gavrilov, G., Manaenkov, S., Atac, A., Cederwall, B., Lersch, D., Andersson, W. Ikegami, Johansson, T., Marciniewski, P., Schönning, K., Melnychuk, D., Wojciechowski, M., Bühler, P., Marton, J., Widmann, E.

    “…This paper reports on Monte Carlo simulation results for future measurements of the moduli of time-like proton electromagnetic form factors, | G E | and | G M…”
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