Master, PhD and Academic Jobs at Karlsruhe Institute (KIT)

Our dedicated Fastepo Team has gathered details about all the fully funded PhD and Academic jobs openings at the prestigious Karlsruhe Institute of Technology (KIT) in Germany. Be sure to visit this post regularly for updates and new opportunities.

Karlsruhe Institute of Technology (KIT)

Karlsruhe Institute of Technology (KIT) is Germany’s largest and most prestigious research institution, boasting a legacy that includes six Nobel laureates. Founded in 1825 as the Grand Ducal Engineering College, KIT is a leading public research university in Karlsruhe, Germany. It stands out as a prominent institution for engineering and natural sciences in Europe, offering diverse fields of study, including computer science, electrical engineering, and robotics.

KIT consistently ranks among the top 100 universities globally according to the Times Higher Education World University Rankings 2018-2019. Comprising three distinct institutions—the Karlsruhe University of Applied Sciences, the Karlsruhe University, and the Technische Universität Karlsruhe—KIT is renowned for its excellence in education and research, and it provides a range of fully funded Master’s, PhD, and Postdoctoral positions, complete with competitive salaries. Details of these opportunities can be found in the next section of this post.

Funded Master Projects at Karlsruhe Institute of Technology (KIT)

Below, you’ll discover a comprehensive list of funded Master’s projects at the esteemed Karlsruhe Institute of Technology (KIT), complete with essential details and application deadlines.


Title: Cascaded enhancement of light-matter interactions with nanoantennas coupled to a tunable microcavity

Job Type: Master Thesis

Summary:

This position involves conducting experiments focused on enhancing the fluorescence of individual solid-state emitters and exploring cavity-enhanced microscopy and spectroscopy. The overarching goal is to establish efficient quantum interfaces between light and matter by achieving exceptional spatiotemporal confinement of light. This entails combining high-quality microcavities with laser-machined optical fibers and exploring the potential for enhancement through metallic nano-antennas.

Requirements:

We are seeking a highly creative and motivated individual to contribute to this research endeavor. Applicants should provide:

  • A detailed curriculum vitae (CV).

This Master’s Thesis position offers a unique opportunity to delve into cutting-edge research in the realm of cavity-enhanced photonics and quantum interfaces under the guidance of Prof. David Hunger at KIT.

More Details and Apply.


Title: Precision Spectroscopy of Rare Earth ions

Job Type: Master Thesis

Summary:

The research group led by Prof. David Hunger at Karlsruhe Institute of Technology (KIT) is currently offering a PhD position. This opportunity revolves around the development of an efficient optical interface for individual rare earth ions within solid-state systems, with a particular emphasis on open-access optical microcavities. Rare earth ions are known for their exceptional optical and hyperfine coherence characteristics, making them promising candidates for various quantum optical applications, such as quantum memories and quantum-nonlinear optics. The primary objective is to establish a precise laser system for spectroscopy, enabling enhanced emission from individual ions and small ion ensembles when coupled with high-finesse optical microcavities.

Requirements:

They are seeking a highly motivated and innovative individual to drive forward this pioneering research project. Applicants should provide:

  • A comprehensive curriculum vitae (CV).

This PhD position offers a unique opportunity to participate in cutting-edge research and contribute to the advancement of quantum optics and optical interfaces for rare earth ions, all under the mentorship of Prof. David Hunger at KIT. More Details and Apply.


Title: Coupled flux qubits

Job Offer: Superconducting Quantum Circuits

Job Type: Master

faculty / division: Physik

institute: PHI / IQMT

Summary:

As part of the national GeQCOS project, they are embarking on the development of a demonstrative superconducting quantum processor utilizing flux qubits. These qubits will be composed of a nanoscale Josephson junction and a comparatively large shunt inductance, referred to as a “gFlux-qubit,” along with other superconducting thin film circuit components. In contrast to current processors employing Transmon qubits, flux qubits offer significant advantages, such as considerably larger anharmonicity, leading to improved scalability and the potential for more intricate quantum circuits. This thesis project will primarily investigate various coupling mechanisms between two qubits.

Requirements:

The selected candidate will be responsible for designing and fabricating these qubits using the local cleanroom facilities. Additionally, you will conduct analyses of the qubits within our low-temperature cryostats. This role provides an excellent opportunity to gain expertise in cutting-edge thin film nanofabrication technology and develop skills in measurements at cryogenic temperatures. More Details and Apply.


Title: Development of new fabrication methods and materials for superconducting quantum circuits

Job Offer: Superconducting Quantum Circuits

Job Type: Master

faculty / division: Physik

institute: PHI / IQMT

starting date: now

Summary:

Superconducting quantum circuits represent a promising avenue for the future development of quantum processors, despite the existence of several technological hurdles. One crucial aspect pertains to the materials used in these circuits and their utilization. Within the context of the national GeQCOS project, they are actively engaged in the exploration of alternative fabrication methods and the investigation of promising new materials. This includes conducting measurements on superconducting resonators and qubits, aiming to advance the field. (2)

Requirements:

In this thesis role, they seek an individual who will be responsible for the design and fabrication of superconducting quantum circuits utilizing local cleanroom facilities. Subsequently, these circuits will be analyzed in low-temperature cryostats. The role offers the opportunity to acquire expertise in cutting-edge thin film nanofabrication technology and to develop measurement skills at cryogenic temperatures. Applicants with a keen interest in solid-state physics, quantum information processing, nanotechnology, or related fields are encouraged to apply, as they are open to discussing various aspects of the research. More Details and Apply.


Karlsruhe Institute of Technology (KIT) PhD and Academic Jobs

The KIT PhD program provides a unique opportunity to study at the top tier of German academia. Students are encouraged to work on cutting-edge research topics in the fields of computer science, engineering, and mathematics.

Listed below are all available fully-funded PhD positions at Karlsruhe Institute of Technology (KIT) in Germany. All of these positions are fully funded and provide a high salary


Title: Luminescence of Single Lanthanide Molecular Complexes

Job Type: PhD Thesis

Job description:

They are exploring the potential of rare-earth metal-based materials for low-energy lighting and electrically driven single-photon sources. By combining photon spectroscopy with scanning tunneling microscopy (STM), they have developed a unique approach called Scanning Tunneling Microscopy Induced Luminescence (STML). This method allows them to study the light-emitting properties of individual tailor-made molecules. They aim to understand how these molecules behave at ultra-high vacuum and cryogenic temperatures, verifying their stability and characteristics on surfaces, and analyzing their electroluminescence. They will also investigate the statistical nature of emitted light, including potential higher-order effects like up-and-down conversion.

Requirements:

They are seeking a candidate for this PhD thesis who is interested in exploring the fascinating properties of these molecules and is willing to conduct experiments using STML in specialized conditions. The role involves using STM to gather data on molecular states, energy levels, and emission characteristics, contributing to the advancement of our understanding of quantum phenomena. More Details and Apply.


Available Postdoctoral Positions at Karlsruhe Institute of Technology (KIT)

You can discover a comprehensive list of available Postdoctoral Positions at Karlsruhe Institute of Technology (KIT) in the following section, complete with pertinent details and application deadlines.


Title: Cavity control of rare earth ions

Job Type: Postdoc

Job description:

They are currently accepting applications for a two-year Postdoctoral position within the research group led by Prof. David Hunger at Karlsruhe Institute of Technology (KIT). This project is dedicated to realizing an efficient optical interface and advanced control techniques for rare earth ions within solid-state systems, specifically focusing on open-access optical microcavities. Rare earth ions exhibit exceptional optical and hyperfine coherence properties, making them highly promising candidates for various quantum optical applications, ranging from quantum memories to quantum computing. Building upon recent research developments, particularly the work of Casabone et al., the project aims to expand the toolbox for advanced control of both ensembles and individual ions.

This project is funded through a Helmholtz Recognition award and the European Union 7th Framework Program, and it involves close collaboration with leading research groups in the field of rare-earth ion spectroscopy.

Requirements:

They are seeking a dynamic and driven individual to drive the progress of this research initiative. Applicants should possess experience in quantum optics, cavity quantum electrodynamics (QED), or solid-state spectroscopy. The successful candidate will play a vital role in advancing our understanding and applications of rare earth ions in quantum technologies. More Details and Apply.


Title: Quantum Coherent Control of Atomic and Molecular Spins on Surfaces

Location: Physics Faculty

Job Type: Postdoc

Job description:

They welcome applications from motivated individuals, including PhD students in their final stages and PostDocs, to join their research group. There are several available projects within their research areas, which can be tailored to the candidate’s profile and preferences. These projects encompass:

  • Coherent manipulation of atomic, nuclear, and molecular spins on surfaces.
  • Development of new quantum sensors utilizing single atoms and molecules.
  • Establishment and operation of a dilution refrigerator STM.

Successful candidates will collaborate within a small research team, working alongside PhD and Master’s students. The role does not entail mandatory teaching responsibilities. While internal funding opportunities are accessible, they are committed to assisting candidates in their pursuit of external grants. This support extends to various programs, including but not limited to:

  • Humboldt Research Fellowship (for non-German candidates)
  • Marie Skłodowska-Curie Actions (for European candidates)
  • Georg Forster Research Fellowship (for candidates from developing countries)
  • DFG Eigene Stelle (for German candidates)

Requirements: Applicants should possess a strong motivation to contribute to cutting-edge research in the specified fields. They are encouraged to apply, especially if they are in the final stages of their PhD or are PostDocs seeking new research opportunities. Collaboration within a research team is a key aspect of the role, and candidates should be prepared to work with PhD and Master’s students. While there is no mandatory teaching requirement, a willingness to engage in collaborative research and pursue external grant opportunities is highly valued. More Details and Apply.


If you are still searching for the perfect position, we extend an invitation to explore the upcoming posts showcasing exciting PhD and Postdoc opportunities in Germany:



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