课题基金 / 基金详情

Liverpool John Moores University ARI Consolidated Grant 2021-2024

Liverpool John Moores University ARI Consolidated Grant 2021-2024
利物浦约翰摩尔斯大学 ARI 综合补助金 2021-2024
批准号:
ST/V00087X/1
负责人:
Philip James
金额:
$146.62万
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2021
资助国家:
英国
项目状态:
未结题
起止时间:
2021 至 --

项目摘要

项目成果

Philip James的其他基金

相似基金

相关文献

中文摘要
翻译
我们将利用观测和理论在天体物理学的前沿开展工作。ARI的使命是成为世界领先的研究中心,达到国际最高水平的卓越水平。我们的研究使用了最先进的设施和数据分析技术。这种情况下的项目在技术上要求很高,需要PDRA和其他支持来帮助提供科学。基于ARI在恒星形成(SF)方面的世界领先专业知识,我们将通过绘制3-D恒星形成效率图并研究SF与银河系气体分布之间的联系,来研究SF与银河系气体物理之间的联系。第二个项目将考察不同环境中的SF过程,特别是在早期宇宙的普遍条件下,评估行星系统作为环境和宇宙周期的函数的生存概率。我们将通过将实际质量损失率纳入到它们的后期演化计算中,并在用于研究这些最后阶段的模型大气中建立风,来确定大质量恒星在死亡前是如何出现的。我们将利用最近在这些系统中发现的多恒星群体(主要由ARI驱动)来解决一个主要的悬而未决的问题,球状星团的形成机制,以提供一个新的视角来解决这个问题。球状星团也将在另一项研究中使用,以揭示其宿主星系的演化,使用世界领先的宇宙学模拟中嵌入的详细星团形成物理的独特组合。通过对银河系(MW)恒星(远地点、Gaia-weave)和宇宙数值模拟(EAGLE)的主要调查的联合分析,我们将讨论卫星星系和现场SF对MW晕质量的贡献,从而揭示MW是否是典型星系的问题。第一个是对宇宙锂丰度这一长期问题的研究,这个问题将通过对大量缺乏金属的下部红巨星分支恒星的光谱分析来解决。第二部分将使用一种基于非线性宇宙学微扰理论的新的高效方法,研究质量中微子对宇宙结构形成的影响。时间域天体物理学一直是ARI研究的核心领域,由世界领先的2米机器人利物浦望远镜(LT)支持。这一应用代表了这一活动的扩大,包括致密天体合并和从新星到伽玛暴的所有恒星爆炸。这一领域的一项理论建议涉及新星超遗迹的建模,其动机是ARI研究人员在M31中发现了这样的遗迹。这项工作对新星种群研究和SNIa事件的途径具有重要意义。我们将计算不同质量、剥离程度和爆炸能量的恒星的超新星爆炸模型的可观测特征,并将结果与观测结果进行比较。我们还将使用兹维基瞬变设备开发和利用第一个大的、统一选择的、光谱完整的光学瞬变样本。这将使我们能够研究所有形式的恒星死亡的观测参数空间,并为LSST做准备。研究引力波事件的后续计划将提供对致密天体合并的独特洞察,将观测研究与开发用于表征这些事件的新模型相结合。这些活动利用了ARI在该领域的专业知识,并利用了我们对SN探测测量ZTF、LIGO-Virgo EM后续实验、SWIFT GRB卫星和包括LT在内的一系列领先天文设施的观测的特权。
英文摘要
We will carry out work at the forefront of astrophysics using both observations and theory. The ARI's mission is to be a world-leading research centre at the highest international level of excellence. Our research uses the most advanced facilities and data analysis techniques. The projects in this case are technically demanding and require PDRA and other support to aid the delivery of the science. Building on ARI's world-leading expertise in star formation (SF), we will investigate the connection between SF and gas physics in the Milky Way by mapping the SF efficiency in 3-D and studying the connection between SF and the gas distribution in the Galaxy. A second project will look at SF processes in different environments, and particularly in the conditions prevailing in the early Universe, to assess the survival probabilities of planetary systems as a function of environment and cosmological epoch.We will determine how massive stars appear just before they die, by incorporating realistic mass-loss rates into calculations of their late-stage evolution, and building winds into the model atmospheres used to study these final phases.We will address a major unsolved problem, the formation mechanism of globular clusters, using the recent discovery of multiple stellar populations in these systems (driven largely from ARI) to give a new perspective on this question. Globular clusters will also be used in a separate study to shed light on the evolution of their host galaxies, using a unique combination of detailed cluster formation physics embedded in world-leading cosmological simulations.Through a joint analysis of major surveys of Milky Way (MW) stars (APOGEE, Gaia-WEAVE) and cosmological numerical simulations (EAGLE), we will address the contribution of satellite galaxies and in situ SF to the mass to the MW halo, and hence shed new light on the question of whether the MW is a typical galaxy.Two of the proposed projects address cosmological questions. The first is a study of the long-lasting problem of the cosmological lithium abundance, which will be tackled through spectroscopic analysis of a large sample of metal-poor lower red giant branch stars. The second will look at the impact of massive neutrinos on cosmological structure formation, using a novel and highly efficient method based on non-linear cosmological perturbation theory.Time-domain astrophysics has always been a core area of ARI research, underpinned by the world-leading 2-metre robotic Liverpool Telescope (LT). This application represents a broadening of this activity, encompassing compact object mergers and the full range of stellar explosions, from novae to GRBs. The one theoretical proposal in this area concerns modelling of nova super-remnants, motivated by the discovery of such a remnant in M31 by ARI researchers. This work has implications for nova population studies and pathways to SNIa events. We will compute the observable characteristics of supernova explosion models ofstars with different masses, degrees of stripping and explosion energies, and compare the outcomes with observations. We will also develop and exploit the first large, uniformly-selected, spectroscopically-complete sample of optical transients using the Zwicky Transient Facility. This will allow us to study the observational parameter space of all forms of stellar death and prepare for LSST.A follow-up programme studying counterparts to gravitational wave events will provide a unique insight into the mergers of compact objects, combining observational studies with the development of new models for the characterisation of these events. These activities capitalise on ARI's expertise in this field and exploit our privileged access to the SN detection survey ZTF; LIGO-Virgo EM follow-up experiments, the Swift GRB satellite and observations on a range of leading astronomical facilities including the LT.
期刊论文(10)
专著(0)
科研奖励(0)
会议论文
A precursor plateau and pre-maximum [O ii ] emission in the superluminous SN2019szu: a pulsational pair-instability candidate
超光速 SN2019szu 中的前驱平台和最大前 [O ii ] 发射:脉动对不稳定性候选者
DOI: 10.1093/mnras/stad3776
发表时间: 2024
期刊: Monthly Notices of the Royal Astronomical Society
影响因子: 4.8
作者: [Aamer A]
通讯作者: Aamer A
DOI: 10.1093/mnras/stac567
发表时间: 2021-07
期刊: Monthly Notices of the Royal Astronomical Society
影响因子: 4.8
作者: [D. Alkhanishvili;C. Porciani;E. Sefusatti;M. Biagetti;A. Lazanu;Andrea Oddo;V. Yankelevich]
通讯作者: D. Alkhanishvili;C. Porciani;E. Sefusatti;M. Biagetti;A. Lazanu;Andrea Oddo;V. Yankelevich
DOI: 10.1093/mnras/stab1150
发表时间: 2020-07
期刊: Monthly Notices of the Royal Astronomical Society
影响因子: 4.8
作者: [S. Alam;A. D. Mattia;A. Tamone;S. Ávila;J. Peacock;V. Gonzalez-Perez;Alex Smith;A. Raichoor;A. Ross;J. Bautista;É. Burtin;J. Comparat;K. Dawson;Hélion Marie du Mas des Bourboux;S. Escoffier;H. Gil-Marín;S. Habib;K. Heitmann;Jiamin Hou;F. G. Mohammad;E. Mueller;R. Neveux;R. Paviot;W. Percival;G. Rossi;V. Ruhlmann-Kleider;R. Tojeiro;M. V. Magaña;Cheng Zhao;Gong-Bo Zhao]
通讯作者: S. Alam;A. D. Mattia;A. Tamone;S. Ávila;J. Peacock;V. Gonzalez-Perez;Alex Smith;A. Raichoor;A. Ross;J. Bautista;É. Burtin;J. Comparat;K. Dawson;Hélion Marie du Mas des Bourboux;S. Escoffier;H. Gil-Marín;S. Habib;K. Heitmann;Jiamin Hou;F. G. Mohammad;E. Mueller;R. Neveux;R. Paviot;W. Percival;G. Rossi;V. Ruhlmann-Kleider;R. Tojeiro;M. V. Magaña;Cheng Zhao;Gong-Bo Zhao
Cold dust and low [O iii ]/[C ii ] ratios: an evolved star-forming population at redshift 7
冷尘埃和低 [O iii ]/[C ii ] 比率:红移 7 处演化的恒星形成族群
DOI: 10.1093/mnras/stad3111
发表时间: 2024
期刊: Monthly Notices of the Royal Astronomical Society
影响因子: 4.8
作者: [Algera H]
通讯作者: Algera H
共 10 条
    UKCRIC - CORONA: City Observatory Research platfOrm for iNnovation and Analytics
    • 批准号:
      EP/R013411/1
    • 项目类别:
      Research Grant
    • 资助金额:
      $128.89万
    • 财政年份:
      2018
    • 负责人:
      Philip James
    • 依托单位:
    Studies in the Mathematical Theory of Global Climate
    • 批准号:
      7807962
    • 项目类别:
      Continuing Grant
    • 资助金额:
      $4.42万
    • 财政年份:
      1978
    • 负责人:
      Philip James
    • 依托单位:
    国内基金
    海外基金
    拟共形一致化Gromov双曲空间理论在John度量空间中的一些应用
    • 批准号:
      11901090
    • 项目类别:
      青年科学基金项目
    • 资助金额:
      27.0万元
    • 批准年份:
      2019
    • 负责人:
      周青山
    • 依托单位:
    弱型BMO鞅空间与John-Nirenberg定理
    • 批准号:
      11701574
    • 项目类别:
      青年科学基金项目
    • 资助金额:
      19.0万元
    • 批准年份:
      2017
    • 负责人:
      彭丽华
    • 依托单位: