反谐振空芯光纤中的偏振效应博士研究员

Polarization effects in antiresonant hollow core optical fibres

University of Southampton · 英国 · Southampton

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 ORC (7097) • add name of the supervisor in section 2 of the application Applications should include: • your CV (resumé) • 2 academic references • degree transcripts and certificates to date • English language qualification (if applicable)
最近申请截止
2027-10-31
全部申请截止
  • (Europe/London)
资助
未取得可核验的具体补助金额,请查看原帖的资格与资金说明。
原帖材料说明
  • • 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
本项目深入探索反谐振空芯光纤(AR-HCFs)中神秘的偏振世界,揭示其背后的物理机制并开发控制与优化策略。工作兼顾理论与实验:开发理论框架揭示缩放定律并建立偏振行为预测模型;建模并探索AR-HCFs设计空间以理解几何属性对偏振性能的影响;开创新的偏振测量技术,研究已部署的光纤行为并建立连接可观测现象与理论的实验。研究成果将应用于从航空航天到超大规模数据通信再到量子技术的现实系统。
申请条件
申请人必须持有2:1荣誉学位或其国际同等学历。
待遇
英国、欧盟及地平线欧洲学生可获得奖学金资助,中国国家留学基金委(CSC)学生可享受学费减免,其他国际申请者资金非常有限且竞争激烈,欢迎已获得或正在寻求外部资助的海外学生申请。
申请方式
申请人需通过学校系统在线申请,选择项目类型为Research、2027/28学年、工程与物理科学学院,选择全职或兼职,搜索项目代码 PhD ORC (7097),并在申请的第二部分添加导师姓名。
材料清单
  • 个人简历 (CV)
  • 2封学术推荐信
  • 迄今为止的学位成绩单与证书
  • 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
2027-10-31
学科
物理与天文
合同类型
项目资助
本站收录
内容更新
导师
Austin Taranta
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
    Through this PhD you will uncover the physics behind polarization effects in AR-HCFs
  • bachelor_ok
    You must have a 2:1 honours degree, or its international equivalent.
原文

View all current projects

Postgraduate research project

Polarization effects in antiresonant hollow core optical fibres

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 Oct 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

Dive into the mysterious world of polarization in antiresonant hollow core fibres, where conventional wisdom is turned on its head, and unexpected phenomena emerge every day. Through your insights and innovation, you will shape the future of this cutting-edge technology from data centres, to high-power lasers, to space systems.

Across the world, the race is on, to develop the optical fibres which will enable the sensors of the future and form tomorrow’s communications backbone. The antiresonant hollow core fibres (AR-HCFs) invented and pioneered in Southampton are now deployed at the forefront of these fields, and this project offers the opportunity to create the next innovation which will push these frontiers. AR-HCFs guide light in a fundamentally unique way, opening a vast and mostly unexplored design space, and offering novel properties which are revolutionizing photonics. Despite its integral importance to guidance, these novel fibres’ polarization behaviour is one of the least understood aspects of their performance.

Through this PhD you will uncover the physics behind polarization effects in AR-HCFs and develop strategies to control and optimize them.

Your work will be a balance of theory and experiment, as you:

• develop theoretical frameworks to uncover scaling laws and create predictive models of polarization behaviour

• model and explore the design space of AR-HCFs, to understand how geometric attributes influence polarization performance

• pioneer new polarimetric techniques, investigate deployed fibre behaviour, and build experiments that bridge observables to theory.

You will join the world-leading Hollow Core Fibre group, working in cutting-edge labs and collaborating closely with industry partners in a variety of fields. The outcomes of your research will contribute to the development of real-world systems deployed at scale, from aerospace to hyperscale datacoms to quantum technologies.

You will be given full training by your supervisory team and other researchers on the use of an array of cutting-edge analytical and experimental tools. From this foundation you will begin to grow your own new tools and techniques.

The School of Optoelectronics (ORC) 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

Professor Austin Taranta

Professor

Research interests

• Hollow core antiresonant fibres;

• Hollow core optical fibre sensors;

• Fibre-optic gyroscopes and optical inertial sensors.

Supervisors

GG

Mr Gianluca Guerra

Research Fellow

Dr Gregory Jasion

Principal Research Fellow

Research interests

• Hollow core optical fibre

• Fibre draw modelling

• Multiphase flow

ID

Dr Ian Davidson

Senior Research Fellow (ORC Advanced Fellowship)

Research interests

• Fabrication, characterisation, and usage of novel micro-structured (predominantly hollow-core) optical fibres for a range of research applications

Entry requirements

You must have a 2:1 honours degree, or its international equivalent.

Fees and funding

UK, EU and Horizon Europe students are eligible for scholarships.

Chinese Scholarship Council (CSC) students are eligible for fee waivers.

Funding for other international applicants is very limited and highly competitive. Overseas students who have secured or are seeking external funding are welcome to apply.

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 ORC (7097)

• add name of the supervisor in section 2 of the application

Applications should include:

• 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

If you have a general question, email our Doctoral College (doctoralcollege-admissions@soton.ac.uk).

Project leader

If you wish to discuss any details of the project informally, please email Professor Austin Taranta (a.a.tarant@soton.ac.uk).

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