先进磁性材料的自旋-晶格动力学博士职位
PhD Studentship: EPSRC: Spin-Lattice Dynamics in Advanced Magnetic Materials
原帖优先:申请材料、截止时间与资格以原帖和学校官方说明为准。
AI 中文速览
- 研究内容
- 该博士项目将使用原子级别的自旋-晶格动力学模拟来研究操纵各种磁性系统中的自旋的方法
- 申请条件
- 申请者应具有或预计获得至少 2.1 荣誉学位或硕士学位(或国际同等学历)在相关科学或工程学科
- 待遇
- £20,780 的免税津贴和学费将被支付
- 申请方式
- 申请方式:请联系主导师 Dr Mara Strungaru - mara.strungaru@manchester.ac.uk,提供当前学习水平、学术背景和相关经验的详细信息,以及一段关于您对该博士项目的动机的描述
- 材料清单
- 当前学习水平
- 学术背景
- 相关经验
- 动机描述
由 @cf/meta/llama-3.3-70b-instruct-fp8-fast 生成,博士岗判定置信度 90%。
结构化信息
- 截止
- (Europe/London) 剩 7 天
- 学科
- 材料科学
- 合同类型
- 雇佣合同
- 原文薪资
- GBP 20,780 / 年(税前)
- 税后月薪(估)
- ¥13,100;房租后 ¥4,800
- 估算假设
- 单身、无子女、雇佣合同的粗略估算,以学校 offer 为准;扣除率 18%;汇率日期 2026-10-01
- 原帖发布
- 本站收录
- 内容更新
- 导师
- Dr Mara Strungaru
- 来源
- jobs.ac.uk(英国博士项目及学术招聘) · 最近核对 2026-10-07
判定依据(原文摘录)
- is_phd
This 3.5 -year PhD studentship
- bachelor_ok
at least a 2.1 honours degree or a master’s
原文
How to apply: https://uom.link/pgr-apply-2425
This 3.5 -year PhD studentship is open to Home (UK applicants). The successful candidate will receive an annual tax-free stipend set at the UKRI rate (£20,780 for 2025/26, subject to annual uplift) and tuition fees will be paid.
We expect the stipend to increase each year. EU students with settled or pre-settled status and international student can apply but their application eligibility will be determined on a case-by-case basis
The start date is October 2026 or January 2027.
We recommend that you apply early as the advert may be removed before the deadline. Advanced magnetic materials proved a versatile platform for exploring emergent spin phenomena and developing next-generation technologies.
In this PhD project, the candidate will employ atomistic spin-lattice dynamics simulations, a framework that combines atomistic spin dynamics (magnons) with molecular dynamics (phonons), to investigate ways of manipulating spins in various magnetic systems.
Systems of interest include two dimensional (2D) magnetic materials since they offer several key advantages over traditional bulk materials such as interface and proximity effects that can be exploited for device functionality and reduced electrical current requirements, making them highly promising for energy efficient computing and storage technologies.
This PhD project will provide novel insights for exploring phonons and emergent phenomena in future spintronic and quantum technologies.
The successful candidate will benefit from strong national and international collaborations throughout the project.
Applicants should have or expect to achieve at least a 2.1 honours degree or a master’s (or international equivalent) in an relevant science or engineering related discipline.
To apply, please contact the main supervisor, Dr Mara Strungaru - mara.strungaru@manchester.ac.uk . Please include details of your current level of study, academic background and any relevant experience and include a paragraph about your motivation to study this PhD project. £20,780 tax-free stipend and tuition fees will be paid.