Master Thesis - Spin Dynamics for NMR Hyperpolarization

Forschungszentrum Jülich GmbH

Germany (OH)

On-site

USD 13,667 - 22,779

Full time

14 days+
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Benefits offered by this job

Opportunity to publish results
Collaborative working environment
Structured training and onboarding
Cafeteria with diverse options

Job summary

Forschungszentrum Jülich GmbH is offering a Master Thesis project in Spin Dynamics for NMR Hyperpolarization. This role involves simulating NMR pulse sequences and constructing instrumentation. Candidates should be pursuing a Master’s degree in physics, chemistry, or related fields, with an eagerness to learn and work in a collaborative environment.

You will engage in exciting, impactful research, supported by a collegial team and ample training. Find your place in our interdisciplinary community at Jülich.

Qualifications

  • Basic experience with NMR is beneficial.
  • Willingness to work in a multidisciplinary research environment.
  • Good knowledge of spoken English.

Responsibilities

  • Simulate and implement NMR pulse sequences.
  • Construct instrumentation for low-field NMR experiments.

Skills

NMR experience
Curiosity and eagerness to learn
Collaboration skills
Good English proficiency

Education

Current master studies in physics, chemistry, or materials science

Job description

Master Thesis - Spin Dynamics for NMR Hyperpolarization

If you are interested in creative problem solving at the interface between chemistry and physics, with the chance to mix hands‑on experimental work with theory+simulations, this opportunity may be for you. The function of every cell and organism depends critically on the dynamic interactions between biological macromolecules and on their correct three‑dimensional structure. Faulty interactions and misfolded structures lead to disease and aging. In our Institute of Biological Information Processing (IBI) - Structural Biochemistry (IBI‑7), research aims to understand these interactions and to determine the three‑dimensional structure of protein complexes involved in crucial cellular processes.

The Hyperpolarization Methods research group working at IBI‑7 is open for applications for a Masters thesis project in the field of nuclear spin dynamics. We use a method called parahydrogen-induced polarization, which is a hyperpolarization technique to enhance the NMR/MRI signals of small molecules by a factor of 10⁴ - 10⁵, to enable exciting new applications in medical diagnostics and materials characterization. The hyperpolarization step requires the use of designed magnetic field pulse sequences, and we are looking for a Masters student to work in this area.

Your Job

This project on the topic of hyperpolarization using parahydrogen-induced polarization has two possible directions:

  • Simulating and implementing NMR pulse sequences to manipulate hyperpolarized spin states
  • Constructing instrumentation to do low‑field NMR experiments
Your Profile
  • Current master studies in physics, chemistry, materials science or similar
  • Basic experience with NMR is beneficial
  • Willing to work within a multidisciplinary and collaborative research environment
  • Curiosity and excitement to learn
  • Good knowledge of spoken English

In the research group you will work in an environment that combines the best parts of modern science with traditional academic values. You will carry out fast‑paced research on societally‑relevant topics, with individual support (especially for your personal well‑being) so you can grow as an individual. At the same time, you will have ample opportunity for acquiring knowledge, discussing science, and thinking creatively.

Our Benefits for You

We work on the very latest issues that impact our society and are offering you the chance to actively help in shaping the change! We support you in your work with:

  • Meaningful Tasks: Your thesis deals with a future‑oriented, socially relevant topic with direct practical relevance in an international and interdisciplinary working environment
  • Practical relevance: Potential to publish project results in a peer‑reviewed journal; clearly defined goals, leading to results for a thesis
  • Scientific environment: Work in a high‑impact research field linking quantum technologies and biomedicine
  • Onboarding & teamwork: You can look forward to working in a dedicated, international, and collegial team. It is important to us that you quickly settle into the team and are given structured training for your tasks. We also support you from the very beginning and make your start easier with our Welcome Days and Welcome Guide, as well as with specific support services for international employees if needed, e.g., through our International Advisory Service.
  • Campus experience: Our research campus in the countryside creates ideal conditions for collegial exchange and sporting activities right on site. Our cafeteria offers a wide range of options - you can enjoy a relaxing lunch break with a lake view

In addition to exciting tasks and a collegial working environment, we offer you much more: https://go.fzj.de/benefits

We welcome applications from people with diverse backgrounds, e.g. in terms of age, gender, disability, sexual orientation / identity, and social, ethnic and religious origin. A diverse and inclusive working environment with equal opportunities in which everyone can realize their potential is important to us.

The following links provide further information on diversity and equal opportunities: https://go.fzj.de/equality and on specific support options: https://go.fzj.de/womens-job-journey

Place of Employment: Jülich

Start Date: To the next possible date

Application Deadline: The position will be published until it is successfully filled.

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