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19 PhD Degree-Fully Funded at Forschungszentrum Julich, Germany

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Forschungszentrum Julich, Germany invites online Application for number of  Fully Funded PhD Degree at various Departments. We are providing a list of Fully Funded PhD Programs available at Forschungszentrum Julich, Germany.

Eligible candidate may Apply as soon as possible.

 

(01) PhD Degree – Fully Funded

PhD position summary/title: PhD position – Optimal control theory for full-stack superconducting quantum processor

  • Develop techniques to simulate and control the dynamics for increasing system complexities
  • Implement and optimize small quantum circuits on superconducting qubits with respect to practical short-depth (NISQ) quantum algorithms
  • Cooperate and actively work with experimental partners developing quantum processors using this technological platform
  • Design and implement optimization techniques for full-stack improvement of quantum algorithms
  • Model major sources of experimental error for control theory or for error mitigation techniques

Deadline : Open until filled

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(02) PhD Degree – Fully Funded

PhD position summary/title: PhD Position – Cryo-EM of membrane remodeling proteins

For the Ernst Ruska-Centre for Microscopy and Spectroscopy with Electrons under the direction of Prof. Sachse, you will be working on cryo-EM studies of membrane remodelling proteins in the field of Structural Biology at our institute. The Sachse lab recently determined a series of cryo-EM structures of bacterial as well as eukaryotic members of the endosomal sorting complexes required for transport (ESCRT) protein family. In order to gain a deep structural understanding, we biochemically purify and reconstitute ESCRT protein complexes in lipid environments and visualize them by cryo-EM methods. You will be working in a network of membrane biological research and latest cryo-EM infrastructure.

Deadline : Open until filled

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(03) PhD Degree – Fully Funded

PhD position summary/title: PhD position – From controlling quantum processors to variational quantum algorithms

  • Develop techniques to simulate and control the dynamics of increasingly more complex quantum systems
  • Design and optimize implementations on atomic or superconducting processors from basic control components, to small circuits, to variational quantum algorithms
  • Cooperate with experimental partners which build quantum processors
  • Model major sources of experimental error for better control and error mitigation techniques

Deadline : Open until filled

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(04) PhD Degree – Fully Funded

PhD position summary/title: PhD Position – Electronic system design and modeling for qubit initialization and readout in a scalable quantum architecture

To make the vision of a universal quantum computer reality, we are working on scalable electronic architectures based on semiconductor spin quantum bits (qubits). For ultimately scaling up the number of qubits into the millions, it is crucial to move parts of the control electronics closer to the qubits. To achieve this, we design and implement integrated cryogenic circuits for qubit control and readout in state-of-the-art CMOS technologies. Since the qubits are extremely sensitive to disturbances and operate in temperatures down to a few hundred millikelvins, the requirements on power consumption, noise and area are severe. For this reason, it is necessary to develop new and groundbreaking architectures and circuit topologies. Modeling electronics and their interfaces to qubits in this challenging environment is an essential part of this. Specific tasks are

Deadline : Open until filled

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(05) PhD Degree – Fully Funded

PhD position summary/title: PhD Position – Electronic system design and modeling for scalable long-range qubit coupling architecture

To make the vision of a universal quantum computer reality, we are working on scalable electronic architectures based on semiconductor spin quantum bits (qubits). For ultimately scaling up the number of qubits into the millions, it is crucial to move parts of the control electronics closer to the qubits. To achieve this, we design and implement integrated cryogenic circuits for qubit control and readout in state-of-the-art CMOS technologies. Since the qubits are extremely sensitive to disturbances and operate in temperatures down to a few hundred millikelvins, the requirements on power consumption, noise and area are severe. For this reason, it is necessary to develop new and groundbreaking architectures and circuit topologies. Modeling electronics and their interfaces to qubits in this challenging environment is an essential part of this. Specific tasks are:

Deadline : Open until filled

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(06) PhD Degree – Fully Funded

PhD position summary/title: PhD Positions – Quantitative Plant Sciences

You have a deep interest in how plants optimize nutrient acquisition and acclimate to different soil conditions. You are curious about root functioning and preferably have some experience within plant root research, for example during your master thesis work. You enjoy designing, conducting, and analysing experiments. You enjoy math and quantitative approaches in science and have some affinity with modelling and or computer programming.

Deadline : Open until filled

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(07) PhD Degree – Fully Funded

PhD position summary/title: PhD Position – Cryogenic CMOS for Quantum Computing

  • Fabrication of nanometer transistors with small nanowires in the cleanroom of the Helmholtz Nano Facility (HNF)
  • Analysis of electrical properties of the devices by a variety of characterization, for example I-V, C-V and pulse measurements at both room temperature and cryogenic temperature
  • Interaction with other group members, working on fabrication process and electronic characterization for continuous device optimizations
  • Collaboration with international partners regarding device simulations and specific characterizations

Deadline : Open until filled

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(08) PhD Degree – Fully Funded

PhD position summary/title: PhD Position – Study the Protein / Protein Interface Energetics by Means of Free Energy Calculations Performed Using ML/MM Potentials

Protein–protein interactions (PPIs) mediate a vast number of cellular pathways and processes, making them an important class of targets for drug discovery. However, decades of effort aimed at developing small molecule drugs to modulate PPIs have been rewarded with a relatively modest number of successes. The difficulty is thought to arise primarily from topology; The key issues of code scalability and the time scale problem will be addressed for the first time using a recently developed method that builds on metadynamics – an exact method to compute free energies – and the statistical mechanics of paths.

Deadline : Open until filled

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(09) PhD Degree – Fully Funded

PhD position summary/title: PhD position – Oxide interface electronics towards field-controlled polaritonics

In this position, you will be guided to lead your own project in the field of oxide interface electronics. Inspired from state-of-the-art silicon technologies, you will create confined electronic systems with the goal to create a link between the confinement of electrons and their interaction with electric fieds and light irradition, aiming at novel applications in photonics.

Deadline : Open until filled

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(10) PhD Degree – Fully Funded

PhD position summary/title: PhD-Position – Development of scalable superconducting quantum systems

This position focuses on building, operating, and testing superconducting quantum devices. Your tasks in detail are:

  • Design and fabrication of superconducting quantum circuits
  • Setting up experimental systems for cryogenic measurements
  • Development of a microwave quantum control & readout stack
  • Development of Python code to operate quantum systems
  • Detailed experimental characterization of superconducting qubits to quantify performance and identify limiting physical mechanisms
  • Perform quantum device calibrations, benchmarking, and run quantum algorithms
  • Presenting and publishing the research on an international stage

Deadline : Open until filled

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(11) PhD Degree – Fully Funded

PhD position summary/title: PhD position – Automated creation of energy engineering models for urban districts to assess disruptive events on the security of supply

  • Development of dynamic simulation models in Modelica
  • Verification and validation of simulation models
  • Further development of methods for automated generation of simulation models based on publicly available data (e.g. OpenStreetMap)
  • Integration of models into co-simulation platforms
  • Extension and maintenance of database systems
  • Supporting the development of model predictive control (MPC) algorithms
  • Supporting the development activities of model libraries
  • Supervision of student theses
  • Publication of the achieved results in professional journals

Deadline : Open until filled

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(12) PhD Degree – Fully Funded

PhD position summary/title: PhD Position – Digital twins in safeguarding nuclear waste management

Digital twins are already used in many industrial and planning applications. In nuclear engineering for example, they are used and further developed to improve the safety, operation and design of nuclear facilities. Digital twins also have a high potential for international nuclear material safeguards,e.g. for inspection planning, for optimizing the use of safeguards technologies, and for training purposes. The aim of this work is to explore the possibilities and limits of digital twins in safeguarding nuclear facilities, using the example of an interim storage facility and a geological repository for highly radioactive waste. Your tasks in detail:

Deadline : Open until filled

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(13) PhD Degree – Fully Funded

PhD position summary/title: PhD Position – The Performance Assessment of a Novel Satellite Instrument to Measure Atmospheric Dynamics

  • You will deal with the instrument calibration in our laboratory on ground and the instrument performance verification in space
  • You will perform an intense in-orbit characterization of the stray light sensitivity of the instrument including hands-on mission planning
  • To this end, an existing prototype data processor to convert raw measurement data into calibrated radiance spectra, which was developed in a previous PhD thesis, must first be applied to real in-orbit measurements and be brought to an operational state
  • Next steps involve your applying of an inverse model to the measurement data to obtain spatially resolved temperature data of the atmosphere and analyzing these with respect to large scale variations of the observed temperatures caused by atmospheric waves

Deadline : Open until filled

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(14) PhD Degree – Fully Funded

PhD position summary/title: PhD Position – Radiomics, Deep Learning and Artificial Intelligence in Patients with Brain Tumors based on Multimodal MRI and Amino Acid PET

The PhD student will work in the framework of a DFG (German Research Foundation) funded project on the development, implementation, and application of methods from the broad field of Artificial Intelligence such as Deep Learning or Radiomics towards an improved diagnosis of brain tumor patients based on MRI and PET. Especial emphasis will be put on the correlation of novel neuroimaging techniques and radiomics features and machine learning models with the underlying histopathology by access to local tissue samples. During the project an integration into other related projects within the INM is conceivable, to address individual interests of the applicant, e.g., in PET/MRI hardware or sequence development.

Deadline : Open until filled

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(15) PhD Degree – Fully Funded

PhD position summary/title: PhD Position – Filming Nano-Electrocatalysts for Energy Transition via Operando Liquid-Phase TEM

At the „Electrocatalysis“ department of Prof. Karl Mayrhofer, we offer a PhD position within the team „Nanoanalysis of Electrochemical Processes“ lead by Dr. Andreas Hutzler. We are investigating degradation mechanisms within the framework of green energy conversion and climate change. The open position aims to understand catalyst stability at the nanoscale during electrochemical processes via operando liquid-phase transmission electron microscopy (LP-TEM). Your tasks in detail:

Deadline : Open until filled

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(16) PhD Degree – Fully Funded

PhD position summary/title: PhD Position – Nanostructured Catalyst Preparation

You will be part of the “Novel Catalyst Design” department, headed by Prof. Dr. Marc Ledendecker. The department focuses on the fabrication of metal-based, inorganic catalysts for the global energy transition. We use many different nanoparticles to fabricate highly active supported catalysts. Specifically, this dissertation focuses on the preparation of platinum-based and iridium oxide-based catalysts for the acidic water splitting reaction as used in polymer-electrolyte membrane units (e.g., https://onlinelibrary.wiley.com/doi/full/10.1002/aenm.202301450/ ). You will simultaneously have the opportunity to do your PhD at the Technical University of Munich (TUM) (incl. graduate school) and also use the infrastructure of TUM. Your tasks in detail:

Deadline : Open until filled

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(17) PhD Degree – Fully Funded

PhD position summary/title: PhD Position – Synthesis Automation

You will be part of the Novel Catalyst Design department, headed by Prof. Dr. Marc Ledendecker. The department focuses on the fabrication of metal-based, inorganic catalysts for the global energy transition. We use many different nanoparticles to fabricate highly active supported catalysts. This PhD thesis specifically focuses on automating the synthesis route of e.g. platinum based and iridium oxide based catalysts for acidic water splitting reaction as used in polymer electrolyte membrane units (e.g. https://onlinelibrary.wiley.com/doi/full/10.1002/aenm.202301450/ ). At the same time, you will have the opportunity to do your PhD at the Technical University of Munich (TUM) (incl. graduate school) and also to use the infrastructure of TUM. Your tasks in detail:

Deadline : Open until filled

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(18) PhD Degree – Fully Funded

PhD position summary/title: PhD position – Learning Embeddings for Earth Observation Applications with Supercomputing

The quality and quantity of Earth Observation (EO) data is increasing at a high rate. However its volume makes handing the data challenging, especially as the bandwidths between data centers do not grow accordingly. In your PhD, you will develop AI methods to enhance the accessibility and analysis of a vast amount of high-resolution, multi-source EO data. You will research ML methods of encode and compress high-volume EO data into practical, much smaller representations and scale them to large datasets on our supercomputers. These techniques are designed to efficiently exchange massive geospatial data for few-shots learning, and facilitating real-time searchers on petabyte-scale data. This research will take place within the scope of the recently funded EU project, Embed2Scale.

Deadline : Open until filled

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(19) PhD Degree – Fully Funded

PhD position summary/title: PhD Position – Integrating Large-Scale Energy System Models into High Performance Computers

Large energy system models optimize the size, allocation and operation of components based on simplified assumptions and finite time steps. Currently, their maximum size and level of detail is limited by the capabilities of commercial solvers such as Gurobi and the computational resources. Therefore, the integration of energy system models into high performance computers is a crucial step to optimize Europe`s future energy system to a high level of detail.

Deadline : Open until filled

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About Forschungszentrum Julich, Germany –Official Website

Forschungszentrum Jülich  is a member of the Helmholtz Association of German Research Centres and is one of the largest interdisciplinary research centres in Europe. It was founded on 11 December 1956 by the state of North Rhine-Westphalia as a registered association, before it became “Kernforschungsanlage Jülich GmbH” or Nuclear Research Centre Jülich in 1967. In 1990, the name of the association was changed to “Forschungszentrum Jülich GmbH”. It has close collaborations with RWTH Aachen in the form of Jülich-Aachen Research Alliance (JARA).

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