Zobrazeno 1 - 10
of 3 699
pro vyhledávání: '"King, J. P."'
Autor:
Muniz, J. A., Stone, M., Stack, D. T., Jaffe, M., Kindem, J. M., Wadleigh, L., Zalys-Geller, E., Zhang, X., Chen, C. -A., Norcia, M. A., Epstein, J., Halperin, E., Hummel, F., Wilkason, T., Li, M., Barnes, K., Battaglino, P., Bohdanowicz, T. C., Booth, G., Brown, A., Brown, M. O., Cairncross, W. B., Cassella, K., Coxe, R., Crow, D., Feldkamp, M., Griger, C., Heinz, A., Jones, A. M. W., Kim, H., King, J., Kotru, K., Lauigan, J., Marjanovic, J., Megidish, E., Meredith, M., McDonald, M., Morshead, R., Narayanaswami, S., Nishiguchi, C., Paule, T., Pawlak, K. A., Pudenz, K. L., Pérez, D. Rodríguez, Ryou, A., Simon, J., Smull, A., Urbanek, M., van de Veerdonk, R. J. M., Vendeiro, Z., Wu, T. -Y., Xie, X., Bloom, B. J.
Arrays of optically trapped neutral atoms are a promising architecture for the realization of quantum computers. In order to run increasingly complex algorithms, it is advantageous to demonstrate high-fidelity and flexible gates between long-lived an
Externí odkaz:
http://arxiv.org/abs/2411.11708
Autor:
Norcia, M. A., Kim, H., Cairncross, W. B., Stone, M., Ryou, A., Jaffe, M., Brown, M. O., Barnes, K., Battaglino, P., Bohdanowicz, T. C., Brown, A., Cassella, K., Chen, C. -A., Coxe, R., Crow, D., Epstein, J., Griger, C., Halperin, E., Hummel, F., Jones, A. M. W., Kindem, J. M., King, J., Kotru, K., Lauigan, J., Li, M., Lu, M., Megidish, E., Marjanovic, J., McDonald, M., Mittiga, T., Muniz, J. A., Narayanaswami, S., Nishiguchi, C., Paule, T., Pawlak, K. A., Peng, L. S., Pudenz, K. L., Perez, D. Rodriguez, Smull, A., Stack, D., Urbanek, M., van de Veerdonk, R. J. M., Vendeiro, Z., Wadleigh, L., Wilkason, T., Wu, T. -Y., Xie, X., Zalys-Geller, E., Zhang, X., Bloom, B. J.
Assembling and maintaining large arrays of individually addressable atoms is a key requirement for continued scaling of neutral-atom-based quantum computers and simulators. In this work, we demonstrate a new paradigm for assembly of atomic arrays, ba
Externí odkaz:
http://arxiv.org/abs/2401.16177
Blow-up solutions to a heat equation with spatial periodicity and a quadratic nonlinearity are studied through asymptotic analyses and a variety of numerical methods. The focus is on the dynamics of the singularities in the complexified space domain.
Externí odkaz:
http://arxiv.org/abs/2308.03452
Autor:
Norcia, M. A., Cairncross, W. B., Barnes, K., Battaglino, P., Brown, A., Brown, M. O., Cassella, K., Chen, C. -A., Coxe, R., Crow, D., Epstein, J., Griger, C., Jones, A. M. W., Kim, H., Kindem, J. M., King, J., Kondov, S. S., Kotru, K., Lauigan, J., Li, M., Lu, M., Megidish, E., Marjanovic, J., McDonald, M., Mittiga, T., Muniz, J. A., Narayanaswami, S., Nishiguchi, C., Notermans, R., Paule, T., Pawlak, K., Peng, L., Ryou, A., Smull, A., Stack, D., Stone, M., Sucich, A., Urbanek, M., van de Veerdonk, R., Vendeiro, Z., Wilkason, T., Wu, T. -Y., Xie, X., Zhang, X., Bloom, B. J.
Measurement-based quantum error correction relies on the ability to determine the state of a subset of qubits (ancillae) within a processor without revealing or disturbing the state of the remaining qubits. Among neutral-atom based platforms, a scala
Externí odkaz:
http://arxiv.org/abs/2305.19119
Autor:
Angelopoulos, V., Zhang, X. -J., Artemyev, A. V., Mourenas, D., Tsai, E., Wilkins, C., Runov, A., Liu, J., Turner, D. L., Li, W., Khurana, K., Wirz, R. E., Sergeev, V. A., Meng, X., Wu, J., Hartinger, M. D., Raita, T., Shen, Y., An, X., Shi, X., Bashir, M. F., Shen, X., Gan, L., Qin, M., Capannolo, L., Ma, Q., Russell, C. L., Masongsong, E. V., Caron, R., He, I., Iglesias, L., Jha, S., King, J., Kumar, S., Le, K., Mao, J., McDermott, A., Nguyen, K., Norris, A., Palla, A., Roosnovo, Tam, J., Xie, E., Yap, R. C., Ye, S., Young, C., Adair, L. A., Shaffer, C., Chung, M., Cruce, P., Lawson, M., Leneman, D., Allen, M., Anderson, M., Arreola-Zamora, M., Artinger, J., Asher, J., Branchevsky, D., Cliffe, M., Colton, K., Costello, C., Depe, D., Domae, B. W., Eldin, S., Fitzgibbon, L., Flemming, A., Frederick, D. M., Gilbert, A., Hesford, B., Krieger, R., Lian, K., McKinney, E., Miller, J. P., Pedersen, C., Qu, Z., Rozario, R., Rubly, M., Seaton, R., Subramanian, A., Sundin, S. R., Tan, A., Thomlinson, D., Turner, W., Wing, G., Wong, C., Zarifian, A.
We review comprehensive observations of electromagnetic ion cyclotron (EMIC) wave-driven energetic electron precipitation using data from the energetic electron detector on the Electron Losses and Fields InvestigatioN (ELFIN) mission, two polar-orbit
Externí odkaz:
http://arxiv.org/abs/2211.15653
Nonlinear extended MHD simulations demonstrating seeding of neoclassical tearing modes (NTMs) via MHD-transient-induced multimode interactions are presented. Simulations of NTMs are enabled by two recent NIMROD code developments: the implementation o
Externí odkaz:
http://arxiv.org/abs/2110.12068
Autor:
Snyder, L., Anastasiou, M., Bowden, N. S., Bundgaard, J., Casperson, R. J., Cebra, D. A., Classen, T., Dongwi, D. H., Fotiades, N., Gearhart, J., Geppert-Kleinrath, V., Greife, U., Hagmann, C., Heffner, M., Hensle, D., Higgins, D., Isenhower, L. D., Kazkaz, K., Kemnitz, A., King, J., Klay, J. L., Latta, J., Leal-Cidoncha, E., Loveland, W., Magee, J. A., Manning, B., Mendenhall, M. P., Monterial, M., Mosby, S., Neudecker, D., Prokop, C., Sangiorgio, S., Schmitt, K. T., Seilhan, B., Tovesson, F., Towell, R. S., Walsh, N., Watson, T. S., Yao, L., Younes, W.
The $^{239}$Pu(n,f)/$^{235}$U(n,f) cross-section ratio has been measured with the fission Time Projection Chamber (fissionTPC) from 100 keV to 100 MeV. The fissionTPC provides three-dimensional reconstruction of fission-fragment ionization profiles,
Externí odkaz:
http://arxiv.org/abs/2107.02881
Autor:
Monterial, M., Schmitt, K. T., Prokop, C., Leal-Cidoncha, E., Anastasiou, M., Bowden, N. S., Bundgaard, J., Casperson, R. J., Cebra, D. A., Classen, T., Dongwi, D. H., Fotiades, N., Gearhart, J., Geppert-Kleinrath, V., Greife, U., Hagmann, C., Heffner, M., Hensle, D., Higgins, D., Isenhower, L. D., Kazkaz, K., Kemnitz, A., King, J., Klay, J. L., Latta, J., Loveland, W., Magee, J. A., Manning, B., Mendenhall, M. P., Mosby, S., Neudecker, D., Sangiorgio, S., Seilhan, B., Snyder, L., Tovesson, F., Towell, R. S., Walsh, N., Watson, T. S., Yao, L., Younes, W.
We present the results of a measurement of isotopic concentrations and atomic number ratio of a double-sided actinide target with alpha-spectroscopy and mass spectrometry. The double-sided actinide target, with primarily Pu-239 on one side and U-235
Externí odkaz:
http://arxiv.org/abs/2106.06063
We construct solutions of the fast diffusion equation, which exist for all $t\in\mathbb{R}$ and are singular on the set $\Gamma(t):= \{ \xi(s) ; -\infty 0$, where $\xi\in C^3(\mathbb{R};\mathbb{R}^n)$, $n\geq 2$. We also give a pre
Externí odkaz:
http://arxiv.org/abs/2105.12910
Autor:
Abbott, R., Abreu, A., Addesa, F., Alhusseini, M., Anderson, T., Andreev, Y., Apresyan, A., Arcidiacono, R., Arenton, M., Auffray, E., Bastos, D., Bauerdick, L. A. T., Bellan, R., Bellato, M., Benaglia, A., Benettoni, M., Bertoni, R., Besancon, M., Bharthuar, S., Bornheim, A., Brücken, E., Butler, J. N., Campagnari, C., Campana, M., Carlin, R., Carniti, P., Cartiglia, N., Casarsa, M., Cerri, O., Checchia, P., Chen, H., Chidzik, S., Chlebana, F., Cossutti, F., Costa, M., Cox, B., Dafinei, I., De Guio, F., Debbins, P., del Re, D., Dermenev, A., Di Marco, E., Dilsiz, K., Di Petrillo, K. F., Dissertori, G., Dogra, S., Dosselli, U., Dutta, I., Caleb, F., Madrazo, C. Fernandez, Fernandez, M., Ferrero, M., Flowers, Z., Funk, W., Gallinaro, M., Ganjour, S., Gardner, M., Geurts, F., Ghezzi, A., Gninenko, S., Golf, F., Gonzalez, J., Gotti, C., Gray, L., Guilloux, F., Gundacker, S., Hazen, E., Hedia, S., Heering, A., Heller, R., Isidori, T., Isocrate, R., Jaramillo, R., Joyce, M., Kaadze, K., Karneyeu, A., Kim, H., King, J., Kopp, G., Korjik, M., Koseyan, O. K., Kozyrev, A., Kratochwil, N., Lazarovits, M., Ledovskoy, A., Lee, H., Lee, J., Li, A., Li, S., Li, W., Liu, T., Lu, N., Lucchini, M., Lustermann, W., Madrid, C., Malberti, M., Mandjavize, I., Mao, J., Maravin, Y., Marlow, D., Marsh, B., del Arbol, P. Martinez, Marzocchi, B., Mazza, R., McMahon, C., Mechinsky, V., Meridiani, P., Mestvirishvili, A., Minafra, N., Mohammadi, A., Monti, F., Moon, C. S., Mulargia, R., Murray, M., Musienko, Y., Nachtman, J., Nargelas, S., Narvaez, L., Neogi, O., Neu, C., Niknejad, T., Obertino, M., Ogul, H., Oh, G., Ojalvo, I., Onel, Y., Organtini, G., Orimoto, T., Ott, J., Ovtin, I., Paganoni, M., Pandolfi, F., Paramatti, R., Peck, A., Perez, C., Pessina, G., Pena, C., Pigazzini, S., Radchenko, O., Redaelli, N., Rigoni, D., Robutti, E., Rogan, C., Rossin, R., Rovelli, C., Royon, C., Sahin, M. Ö., Sands, W., Santanastasio, F., Sarica, U., Schmidt, I., Schmitz, R., Sheplock, J., Silva, J. C., Siviero, F., Soffi, L., Sola, V., Sorrentino, G., Spiropulu, M., Spitzbart, D., Leiton, A. G. Stahl, Staiano, A., Stuart, D., Suarez, I., de Fatis, T. Tabarelli, Tamulaitis, G., Tang, Y., Tannenwald, B., Taylor, R., Tiras, E., Titov, M., Tkaczyk, S., Tlisov, D., Tlisova, I., Tornago, M., Tosi, M., Tramontano, R., Trevor, J., Tully, C. G., Ujvari, B., Varela, J., Ventura, S., Vila, I., Wamorkar, T., Wang, C., Wang, X., Wayne, M., Wetzel, J., White, S., Winn, D., Wu, S., Xie, S., Ye, Z., Yu, G. B., Zhang, G., Zhang, L., Zhang, Y., Zhang, Z., Zhu, R.
Publikováno v:
Journal of Instrumentation, Volume 16, July 2021
The MIP Timing Detector will provide additional timing capabilities for detection of minimum ionizing particles (MIPs) at CMS during the High Luminosity LHC era, improving event reconstruction and pileup rejection. The central portion of the detector
Externí odkaz:
http://arxiv.org/abs/2104.07786