Nicolaus Copernicus University
assistant professor (adjunkt) - research staff
접수중2025.09.23~2025.10.22
채용 정보
접수 기간
2025.09.23 00:00~2025.10.22 00:00
접수 방법
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채용 구분
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고용 형태
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지원 자격
박사
모집 전공
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기관 유형
대학교
근무 지역
해외(폴란드)더보기
연봉 정보
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The competition is open to persons who meet the conditions set out in Article 113 of the Act of 20 July 2018 - Law on higher education and science (Journal of Laws of 2018, item 1668) and the following qualification criteria:
Offer Requirements:
The high level of proposed scientific research requires an experienced, ambitious and highly motivated young doctor having a sound theoretical background. It is expected to support the PI in all of the project's tasks. The post-doc will also facilitate knowledge transfer to the MSc students and PhD students
Preferred:
- Experimental work in the field of atomic physics (in particular with ultracold atoms)
- Construction of high-resolution laser systems
- Construction of high vacuum systems
Key responsibilities include:
1) Construction and adaptation of the experimental setup.
2) Performing the experiments related to the project's goals.
3) Performing the calculations and data analysis.
4) It is expected to support the PI in all of the project's tasks.
5) The post-doc will also facilitate knowledge transfer to the MSc students and PhD students.
The candidate must meet the requirements of the National Science Center, in particular, holding a doctoral degree obtained no earlier than 7 years before the year of employment in the project (this period may be extended in cases of career interruptions specified by the National Science Center). A person employed in a postdoc position cannot simultaneously be employed under another employment contract.
The project is carried out in the National Laboratory FAMO within the Sonata Bis 11 programme of the National Science Centre (NCN). The National Laboratory FAMO is a leading Polish research-oriented institution focused on atomic, molecular, and optical physics problems. Currently, several European projects are realized in National Laboratory FAMO, including: Quantum Flagship and EMPIR concerning ultra-cold atoms, quantum control, and optical atomic clocks.
The project is devoted to creating a new research team for developing a new experimental platform to enable probing fundamental physics and search for new physics beyond the Standard Model utilizing an ultracold mixture of mercury and rubidium atoms. The proposal is divided into objectives that make a coherent research programme ranging from searching for new physics with precise sotope shift measurements, through ultracold atomic and molecular spectroscopy, up to developments in metrology based on a two-species system. The goals will be realized with the unique experimental system capable of simultaneous collecting ultracold Hg and Rb atoms already working in the National Laboratory of Atomic, Molecular and Optical Physics (KL FAMO).
The main research goal of the project is to make use of one of the most promising methods for probing physics beyond the Standard Model, namely looking for breaking of linearity in so-called King plot, applied for Hg isotope shift. A significant improvement proposed in this project is to take advantage of the extremely narrow so-called clock transitions with natural linewidths much below 1 Hz. This, together with the high isotopic diversity of Hg, provides excellent conditions to perform state-of-the-art King-plot based measurements and may pave the way for experimental verification of the Standard Model.
Another project's research goal is to perform the first step towards the experimental platform for quantum simulations based on absolute ground-state molecules in an optical lattice. To create ultracold RbHg molecules, we will use an already existing and operating unique experimental system that has been proven to efficiently cool and trap Hg and Rb atoms in a dual-species magneto-optical trap reaching the temperatures of the order of 10 ?K. Our research on ultracold molecules will be based on two experimental methods: photoassociation (PA) and stimulated Raman adiabatic passage (STIRAP). Photoassociation spectroscopy will be carried out near the D1 (795 nm) transition in Rb. Using the optical frequency comb coupled with our system, we will measure the absolute frequency of PA resonances for various Rb-Hg isotopologues.
Project leader: Dr Marcin Witkowski
Project title: ,,Search for new physics with ultracold mixture of Hg and Rb atoms"
근무 예정지
대표Nicolaus Copernicus University(해외) : Jurija Gagarina 11, 87-100 Toruń
해외(폴란드) : Poland, Faculty of Physics, Astronomy and Informatics, Toruń, 87-100, Grudziądzka 5
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기관 정보
Nicolaus Copernicus University
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대학교(해외)
대표전화
+48 56 611 40 10
대표주소
Jurija Gagarina 11, 87-100 Toruń
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