动态电磁超表面高级波工程博士研究员
Dynamic electromagnetic metasurfaces for advanced wave engineering
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。
博士招生与资助公告
- 申请年度
- 2027;原帖说明:How to apply Apply now You need to: • choose programme type (Research), 2027/28, Faculty of Engineering and Physical Sciences • select Full time or Part time • search for programme PhD Electronic & Electrical Engineering (7092) • add name of the supervisor in section 2 of the application Applications should include: • research proposal • your CV (resumé) • 2 academic references • degree transcripts and certificates to date • English language qualification (if applicable)
- 最近申请截止
- 2027-12-31
- 全部申请截止
- (Europe/London)
- 资助原文
- Fees and funding We offer a range of funding opportunities for both UK and international students. Horizon Europe fee waivers automatically cover the difference between overseas and UK fees for qualifying students. Competition-based Presidential Bursaries from the University cover the difference between overseas and UK fees for top-ranked applicants. Competition-based studentships offered by our schools typically cover UK-level tuition fees and a stipend for living costs for top-ranked applicants. Funding will be awarded on a rolling basis, so apply early for the best opportunity to be considered. For more information, please visit our postgraduate research funding pages.
- 资助条件
- 原帖为竞争性或附条件资助说明,未确认本项目获资助及申请人能获奖;不作为保证全奖。
- 原帖材料说明
- • research proposal
- • your CV (resumé)
- • 2 academic references
- • degree transcripts and certificates to date
- • English language qualification (if applicable)
确定性信息来自对应版本的完整原帖。原帖只提供日期,日末和学校当地时区为本站转换假设。筛选使用最后申请截止;资助与录取以学校审核结果为准。
AI 中文速览
- 研究内容
- 本项目旨在开发用于先进波工程的动态、有源电磁超表面,突破传统波控限制,通过有源、非互易和时变电磁设计,为下一代天线、传感器和通信系统开辟新可能。研究内容涵盖电磁理论、全波仿真、原型制造和射频表征,探索新型超表面拓扑结构和调制方案。
- 申请条件
- 申请人必须持有英国 2:1 荣誉学位或其国际同等学历。
- 待遇
- 提供针对英国及国际学生的多种资助机会,包括竞争性总统奖学金、学校提供的竞争性奖学金(通常涵盖英国本土学费及生活津贴),以及针对符合条件者的地平线欧洲费减;资助按滚动方式发放。
- 申请方式
- 在线申请,需选择项目类型(Research)、2027/28学年、工程与物理科学学院,选择全职或兼职,搜索 PhD Electronic & Electrical Engineering (7092) 并在申请的第二部分添加导师姓名。
- 材料清单
- 研究计划
- 简历(CV)
- 2份学术推荐信
- 迄今为止的学位成绩单和证书
- 英语语言资格证明(如适用)
由 gemini-2.5-flash-lite 生成,博士岗判定置信度 100%。
岗位信息
- 最终轮次截止
- 2027-12-31
- 学科
- 工程
- 合同类型
- 项目资助
- 本站收录
- 内容更新
- 导师
- Sajjad Taravati
- 来源
- 南安普顿大学博士研究项目招生 · 最近核对 2026-10-10
- 详情核验
判定依据(原文摘录)
- is_phd
Type of degree Doctor of Philosophy
- bachelor_ok
You must have a UK 2:1 honours degree or its international equivalent.
原文
View all current projects
Postgraduate research project
Dynamic electromagnetic metasurfaces for advanced wave engineering
Funding
Competition funded
Competition funded
View fees and funding
Type of degree
Doctor of Philosophy
Entry requirements
2:1 honours degree
2:1 honours degree
View full entry requirements
Faculty graduate school
Faculty of Engineering and Physical Sciences
Closing date
31 Dec 2027
On this page
About the project
Potential supervisors
Entry requirements
Fees and funding
How to apply
Contact us
About the project
Potential supervisors
Entry requirements
Fees and funding
How to apply
Contact us
About the project
Imagine surfaces that reprogram how electromagnetic waves behave in real time, steering, amplifying and even shifting their frequency on demand. This project develops dynamic, active metasurfaces that break conventional limits on wave control, opening new possibilities for next-generation antennas, sensors and communication systems through active, nonreciprocal and time-varying electromagnetic design.
Electromagnetic metasurfaces are engineered planar structures that manipulate waves at will. They have transformed antenna and sensor design. However, most existing metasurfaces remain passive and static, fundamentally limiting the range of wave behaviours they can achieve. This project develops dynamic, active metasurfaces whose electromagnetic response can be modulated in space and time. These metasurfaces enable functionalities that passive structures cannot reach. Such funcionalities include gain and amplification within the surface itself, nonreciprocal (direction-dependent) wave propagation, and frequency conversion through time-varying modulation.
The research addresses the core challenge of how to embed active and time-modulated elements into metasurface apertures while retaining the precision, compactness and manufacturability that make metasurfaces attractive in the first place. The project builds on prior work on active, gain-embedded metasurface architectures and their use in nonreciprocal radiation, frequency multiplication and direction-of-arrival sensing. It will explore new metasurface topologies and modulation schemes, combining electromagnetic theory, full-wave simulation, and prototype fabrication and RF characterisation. Its aim is to demonstrate novel wave-engineering functionality relevant to advanced antennas, sensors and communication systems.
Intended outcomes include:
• new design methodologies for dynamic active metasurfaces
• experimentally validated prototypes
• a body of work with strong potential for patent protection and industry translation, following prior success developing metasurface intellectual property
The project offers training across the full pipeline from electromagnetic theory to hardware realisation and measurement, within an active research group with an established track record in active and time-modulated electromagnetic systems and antennas.
The School of Electronics and Computer Science is committed to promoting equality, diversity inclusivity as demonstrated by our Athena SWAN award. We welcome all applicants regardless of their gender, ethnicity, disability, sexual orientation or age, and will give full consideration to applicants seeking flexible working patterns and those who have taken a career break. The University has a generous maternity policy, onsite childcare facilities, and offers a range of benefits to help ensure employees’ well-being and work-life balance. The University of Southampton is committed to sustainability and has been awarded the Platinum EcoAward.
Potential supervisors
Lead supervisor
Dr Sajjad Taravati
Lecturer
Research interests
• Metamaterials/metasurfaces/antennas
• Electromagnetics/telecommunications
• Superconducting quantum circuits
Entry requirements
You must have a UK 2:1 honours degree or its international equivalent.
Fees and funding
We offer a range of funding opportunities for both UK and international students. Horizon Europe fee waivers automatically cover the difference between overseas and UK fees for qualifying students.
Competition-based Presidential Bursaries from the University cover the difference between overseas and UK fees for top-ranked applicants.
Competition-based studentships offered by our schools typically cover UK-level tuition fees and a stipend for living costs for top-ranked applicants.
Funding will be awarded on a rolling basis, so apply early for the best opportunity to be considered.
For more information, please visit our postgraduate research funding pages.
How to apply
Apply now
You need to:
• choose programme type (Research), 2027/28, Faculty of Engineering and Physical Sciences
• select Full time or Part time
• search for programme PhD Electronic & Electrical Engineering (7092)
• add name of the supervisor in section 2 of the application
Applications should include:
• research proposal
• your CV (resumé)
• 2 academic references
• degree transcripts and certificates to date
• English language qualification (if applicable)
Contact us
Faculty of Engineering and Physical Sciences
For questions about applying, email our Doctoral College (doctoralcollege-admissions@soton.ac.uk).
Project leader
For an initial conversation, email Dr Sajjad Taravati (S.Taravati@soton.ac.uk).