The Experts below are selected from a list of 36519 Experts worldwide ranked by ideXlab platform

Ll. Marti - One of the best experts on this subject based on the ideXlab platform.

  • Atmospheric neutrino oscillation analysis with improved Event Reconstruction in Super-Kamiokande IV
    Progress of Theoretical and Experimental Physics, 2019
    Co-Authors: M. Jiang, Ko Abe, C. Bronner, Y. Hayato, M. Ikeda, K. Iyogi, J. Kameda, Y. Kato, Yasuhiro Kishimoto, Ll. Marti
    Abstract:

    A new Event Reconstruction algorithm based on a maximum likelihood method has been developed for Super-Kamiokande. Its improved kinematic and particle identification capabilities enable the analysis of atmospheric neutrino data in a detector volume 32% larger than previous analyses and increases sensitivity to the neutrino mass hierarchy. Analysis of a 253.9 kton-year exposure of the Super-Kamiokande IV atmospheric neutrino data has yielded a weak preference for the normal hierarchy, disfavoring the inverted hierarchy at 74% assuming oscillations at the best fit of the analysis.

  • Atmospheric Neutrino Oscillation Analysis with Improved Event Reconstruction in Super-Kamiokande IV
    PTEP, 2019
    Co-Authors: M. Jiang, C. Bronner, Y. Hayato, M. Ikeda, K. Iyogi, J. Kameda, Y. Kato, Yasuhiro Kishimoto, Ll. Marti, M. Miura
    Abstract:

    A new Event Reconstruction algorithm based on a maximum likelihood method has been developed for Super-Kamiokande. Its improved kinematic and particle identification capabilities enable the analysis of atmospheric neutrino data in a detector volume 32% larger than previous analyses and increase the sensitivity to the neutrino mass hierarchy. Analysis of a 253.9 kton|$\cdot$|year exposure of the Super-Kamiokande IV atmospheric neutrino data has yielded a weak preference for the normal hierarchy, disfavoring the inverted hierarchy at 74% assuming oscillations at the best fit of the analysis.

Lucia Grillo - One of the best experts on this subject based on the ideXlab platform.

  • arXiv : HEP Community White Paper on Software trigger and Event Reconstruction
    arXiv: Computational Physics, 2018
    Co-Authors: Johannes Albrecht, Michel De Cian, Caterina Doglioni, Conor Fitzpatrick, Frank Winklmeier, Martin Ritter, William Kalderon, Simon George, Moyse, Lucia Grillo
    Abstract:

    Realizing the physics programs of the planned and upgraded high-energy physics (HEP) experiments over the next 10 years will require the HEP community to address a number of challenges in the area of software and computing. For this reason, the HEP software community has engaged in a planning process over the past two years, with the objective of identifying and prioritizing the research and development required to enable the next generation of HEP detectors to fulfill their full physics potential. The aim is to produce a Community White Paper which will describe the community strategy and a roadmap for software and computing research and development in HEP for the 2020s. The topics of Event Reconstruction and software triggers were considered by a joint working group and are summarized together in this document.

  • arXiv : HEP Community White Paper on Software trigger and Event Reconstruction: Executive Summary
    arXiv: Computational Physics, 2018
    Co-Authors: Johannes Albrecht, Michel De Cian, Caterina Doglioni, Conor Fitzpatrick, Frank Winklmeier, Martin Ritter, William Kalderon, Simon George, Moyse, Lucia Grillo
    Abstract:

    Realizing the physics programs of the planned and upgraded high-energy physics (HEP) experiments over the next 10 years will require the HEP community to address a number of challenges in the area of software and computing. For this reason, the HEP software community has engaged in a planning process over the past two years, with the objective of identifying and prioritizing the research and development required to enable the next generation of HEP detectors to fulfill their full physics potential. The aim is to produce a Community White Paper which will describe the community strategy and a roadmap for software and computing research and development in HEP for the 2020s. The topics of Event Reconstruction and software triggers were considered by a joint working group and are summarized together in this document.

M. Jiang - One of the best experts on this subject based on the ideXlab platform.

  • Atmospheric neutrino oscillation analysis with improved Event Reconstruction in Super-Kamiokande IV
    Progress of Theoretical and Experimental Physics, 2019
    Co-Authors: M. Jiang, Ko Abe, C. Bronner, Y. Hayato, M. Ikeda, K. Iyogi, J. Kameda, Y. Kato, Yasuhiro Kishimoto, Ll. Marti
    Abstract:

    A new Event Reconstruction algorithm based on a maximum likelihood method has been developed for Super-Kamiokande. Its improved kinematic and particle identification capabilities enable the analysis of atmospheric neutrino data in a detector volume 32% larger than previous analyses and increases sensitivity to the neutrino mass hierarchy. Analysis of a 253.9 kton-year exposure of the Super-Kamiokande IV atmospheric neutrino data has yielded a weak preference for the normal hierarchy, disfavoring the inverted hierarchy at 74% assuming oscillations at the best fit of the analysis.

  • Atmospheric Neutrino Oscillation Analysis with Improved Event Reconstruction in Super-Kamiokande IV
    PTEP, 2019
    Co-Authors: M. Jiang, C. Bronner, Y. Hayato, M. Ikeda, K. Iyogi, J. Kameda, Y. Kato, Yasuhiro Kishimoto, Ll. Marti, M. Miura
    Abstract:

    A new Event Reconstruction algorithm based on a maximum likelihood method has been developed for Super-Kamiokande. Its improved kinematic and particle identification capabilities enable the analysis of atmospheric neutrino data in a detector volume 32% larger than previous analyses and increase the sensitivity to the neutrino mass hierarchy. Analysis of a 253.9 kton|$\cdot$|year exposure of the Super-Kamiokande IV atmospheric neutrino data has yielded a weak preference for the normal hierarchy, disfavoring the inverted hierarchy at 74% assuming oscillations at the best fit of the analysis.

Johannes Albrecht - One of the best experts on this subject based on the ideXlab platform.

  • HEP Community White Paper on Software Trigger and Event Reconstruction
    2019
    Co-Authors: Johannes Albrecht, Amir Farbin, Kenneth Bloom, Tommaso Boccali, Antonio Boveia, Michel De Cian, Caterina Doglioni, Agnieszka Dziurda, Conor Fitzpatrick, Frank Gaede
    Abstract:

    Realizing the physics programs of the planned and upgraded high-energy physics (HEP) experiments over the next 10 years will require the HEP community to address a number of challenges in the area of software and computing. For this reason, the HEP software community has engaged in a planning process over the past two years, with the objective of identifying and prioritizing the research and development required to enable the next generation of HEP detectors to fulfill their full physics potential. The aim is to produce a Community White Paper which will describe the community strategy and a roadmap for software and computing research and development in HEP for the 2020s. The topics of Event Reconstruction and software triggers were considered by a joint working group and are summarized together in this document.

  • HEP Community White Paper on Software Trigger and Event Reconstruction: Executive Summary
    2019
    Co-Authors: Johannes Albrecht, Amir Farbin, Kenneth Bloom, Tommaso Boccali, Antonio Boveia, Michel De Cian, Caterina Doglioni, Agnieszka Dziurda, Conor Fitzpatrick, Frank Gaede
    Abstract:

    Realizing the physics programs of the planned and upgraded high-energy physics (HEP) experiments over the next 10 years will require the HEP community to address a number of challenges in the area of software and computing. For this reason, the HEP software community has engaged in a planning process over the past two years, with the objective of identifying and prioritizing the research and development required to enable the next generation of HEP detectors to fulfill their full physics potential. The aim is to produce a Community White Paper which will describe the community strategy and a roadmap for software and computing research and development in HEP for the 2020s. The topics of Event Reconstruction and software triggers were considered by a joint working group and are summarized together in this document.

  • arXiv : HEP Community White Paper on Software trigger and Event Reconstruction
    arXiv: Computational Physics, 2018
    Co-Authors: Johannes Albrecht, Michel De Cian, Caterina Doglioni, Conor Fitzpatrick, Frank Winklmeier, Martin Ritter, William Kalderon, Simon George, Moyse, Lucia Grillo
    Abstract:

    Realizing the physics programs of the planned and upgraded high-energy physics (HEP) experiments over the next 10 years will require the HEP community to address a number of challenges in the area of software and computing. For this reason, the HEP software community has engaged in a planning process over the past two years, with the objective of identifying and prioritizing the research and development required to enable the next generation of HEP detectors to fulfill their full physics potential. The aim is to produce a Community White Paper which will describe the community strategy and a roadmap for software and computing research and development in HEP for the 2020s. The topics of Event Reconstruction and software triggers were considered by a joint working group and are summarized together in this document.

  • arXiv : HEP Community White Paper on Software trigger and Event Reconstruction: Executive Summary
    arXiv: Computational Physics, 2018
    Co-Authors: Johannes Albrecht, Michel De Cian, Caterina Doglioni, Conor Fitzpatrick, Frank Winklmeier, Martin Ritter, William Kalderon, Simon George, Moyse, Lucia Grillo
    Abstract:

    Realizing the physics programs of the planned and upgraded high-energy physics (HEP) experiments over the next 10 years will require the HEP community to address a number of challenges in the area of software and computing. For this reason, the HEP software community has engaged in a planning process over the past two years, with the objective of identifying and prioritizing the research and development required to enable the next generation of HEP detectors to fulfill their full physics potential. The aim is to produce a Community White Paper which will describe the community strategy and a roadmap for software and computing research and development in HEP for the 2020s. The topics of Event Reconstruction and software triggers were considered by a joint working group and are summarized together in this document.

Rainer Mankel - One of the best experts on this subject based on the ideXlab platform.