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Are you eager to push optical atomic clocks to new levels in a lively international research group Do you enjoy creating complex machines that have never existed before Do you want to explore physics that nobody else has seen Maybe you want to join our team as a PhD on our journey to continuous cold and ultracold atom interferometry. We are the QG&QI group at the University of Amsterdam and you can read more about the project here.
With this project you will join a team of experimental quantum physicists at the University of Amsterdam who are building a new type of atom interferometer. Atom interferometers are quantum sensors that exploit the wave-particle duality of matter to achieve exceptional sensitivity to inertial forces such as acceleration and rotation. Their performance now rivals and in some domains surpasses that of classical systems in gravimetry gradiometry and gyroscopy. However most current implementations are pulsed and sequential limiting their bandwidth robustness and scalability. Achieving continuous operation in a compact format remains a major challengeparticularly for real-world applications where size weight power consumption and long-term stability are critical. This project aims to overcome these limitations by integrating recent advances in laser cooling matter-wave optics and coherent atom sources. It will build on the ongoing development of a continuous atom laser at the University of Amsterdam which provides a steady phase-coherent stream of ultracold atoms ideally suited for continuous interferometry. You will design and construct a compact rotation sensor using a rubidium atomic beam generated by a 2D-MOT achieving mean velocities around 20 m/s and enabling interferometer baselines on the order of 20 cm. The interferometric architecture will be inspired by Phys. Rev. Lett. 78 2046 (1997) but adapted for modern low-SWaP operation including Raman-based beam splitting and large momentum transfer techniques. You will characterize the sensors performancesuch as sensitivity scale factor and stabilitywhile exploring advanced quantum control protocols to enhance atom-optical element fidelity. A key long-term goal will be to integrate a continuous atom laser into the system enabling true continuous-wave operation. This work will contribute to the development of a new class of compact high-performance inertial sensors paving the way toward practical quantum sensing platforms for mobile and embedded applications.
For MSCA PhD positions it is required that the applicant shall at the date of recruitment be in the first four years (full-time equivalent research experience) of their research careers and have not been awarded a doctoral degree. The applicant must not have resided or carried out her/his main activity (e.g. work or studies) in the Netherlands for more than 12 months in the three years immediately prior the recruitment date.
A temporary contract for 38 hours per week for the duration of 4 years (the initial contract will be for a period of 18 months and after satisfactory evaluation it will be extended for a total duration of 4 years).The preferred starting date is between 1 October 2025 and 1 October project should lead to a dissertation (PhD thesis). We will draft an educational plan that includes attendance of courses and (international) meetings. We also expect you to assist in teaching undergraduates and master students.
The Quantum Gases & Quantum Information cluster Is part of the Institute of Physics (IoP) of the University of Amsterdam (UvA). The main focus of the group is the use of ultracold Sr gases for novel precision measurement techniques and the study of many-body physics.
If you feel the profile fits you and you are interested in the job we look forward to receiving your application. This call for applicants is placed by the Gen-Q network.
The application must be submitted through theGen-Q website.
Follow the instructions there and select Grand Challenge B Scaling up complexity in so-called qubits and sensors and topic 27B Compact Rubidium cold beam for testing and sensing: Matter-wave diffraction in 2/3D. You must submit the same documents also via the button below. We accept applications until and including31 August 2025.
A complete application must only consist of:
All documents must be submitted as a single PDF file. Please put your family name in the file name. Please note that any extra non-requested documents will be disregarded. For further information regarding the motivation letter see theguide for applicants. There is atemplate for the CVas well as atemplate for the ethics self-assessment. Please see theguidelines for more information on how to fill in the ethics self-assessment document. A knowledge security check can be part of the selection procedure (for details:national knowledge security guidelines).
If you have questions please contact.
Full Time