Côte d'Azur University

Post-doc

Postdoctoral position in Astrochemistry / Experimental Physical Chemistry

접수중2025.10.23~2025.11.30

채용 정보

  • 접수 기간

    2025.10.23 00:00~2025.11.30 18:00

  • 접수 방법

    이메일지원더보기

  • 채용 구분

    경력 무관

  • 고용 형태

    계약직

  • 지원 자격

    박사

  • 모집 전공

    물리・과학, 천문・기상학, 화학, 화학공학, 항공・우주공학더보기

  • 기관 유형

    대학교

  • 근무 지역

    해외(프랑스)더보기

  • 연봉 정보

We are seeking a motivated and skilled postdoctoral researcher to join our team at the Institut de Chimie de Nice as part of the ERC Consolidator Grant ICE-EEVOLVE. This ambitious project aims to investigate the origins and evolution of chiral organic molecules in astrophysical environments—from cold interstellar ices to the early stages of planetary systems. The successful candidate will contribute to experimental studies simulating interstellar ice environments under controlled laboratory conditions, using advanced radiation sources including synchrotrons, lasers, and hydrogen lamps.

  • Involvement in a cutting-edge ERC-funded research project in a rapidly developing field
  • Access to state-of-the-art equipment and radiation sources including synchrotron radiation facilities
  • A dynamic, diverse, and international research environment with advanced training opportunities, embedded in a networked research community at the interface of chemistry, physics, and astronomy


Context: The emergence of homochirality—particularly the dominance of left-handed (L-) amino acids in terrestrial biology—remains one of the most compelling questions in origins-of-life research. Meteorites provide evidence that this molecular asymmetry predates Earth's formation, possibly originating in cold, water-rich ices irradiated by circularly polarized starlight.

Key references: i) Ionizing radiation exposure on Arrokoth shapes a sugar world. PNAS 121, e2320215121 (2024). ii) Uncovering the chiral bias of meteoritic isovaline through asymmetric photochemistry. Nature Communications 14, 3381 (2023). iii) Ribose and related sugars from ultraviolet irradiation of interstellar ice analogues. Science 352, 208–212 (2016).

In ICE-EEVOLVE, we seek to unravel how chiral organic molecules, trapped in amorphous ice matrices, evolve from molecular clouds through star-forming regions to planetary systems. Laboratory simulations under astrophysically relevant conditions will provide key insights into asymmetric photochemistry and post-irradiation alteration processes.


Duration: 12 months, renewable up to 3 years upon mutual agreement


If you're passionate about exploring fundamental questions in astrochemistry and eager to contribute to a high-impact ERC project, we would love to hear from you.

Applications written in English should be sent to cornelia.meinert@univ-cotedazur.fr (combined as one PDF file), and should include:

(1) a cover letter;

(2)a CV including your scientific skills, your research experience and a complete list of publications;

(3) a 2-page summary of your PhD thesis or previous post-doctoral work

(4) contact information for at least 2 referees; recommendation letters should be sent directly to Cornelia Meinert (cornelia.meinert@univ-cotedazur.fr).

근무 예정지

대표Côte d'Azur University(해외) : Av. Valrose, 06000 Nice

해외(프랑스) : France, Institut de Chimie de Nice, CNRS UMR7272, Nice, 06108

기관 정보

Côte d'Azur University

닫기신규 공고 알림받기신규 공고 알림받기 관심 기관 설정으로 신규 공고를 누구보다
먼저 받아보세요.

  • 기관유형

    대학교(해외)

  • 대표전화

    +33 4 89 15 00 00

  • 대표주소

    Av. Valrose, 06000 Nice

  • 홈페이지

    바로가기

관련 키워드

PhysicsChemical physicsSolid state physicsChemistryPhysical chemistryAstronomy
채용마감까지 남은 시간

37일 12:05:05