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HomeScholarshipsDoctoral20 Ph.D. Degree Programs at Forschungszentrum Jülich in Germany Fully Funded

20 Ph.D. Degree Programs at Forschungszentrum Jülich in Germany Fully Funded

20 Ph.D. Degree Programs at Forschungszentrum Jülich in Germany Fully Funded

20 Ph.D. Degree Programs at Forschungszentrum Jülich in Germany are Open right now for all International applicants who want to pursue their Doctoral Degree abroad. Applications are accepted worldwide for Fully Funded Scholarships who want to pursue their career in different fields with fully funded Ph.D. degrees at Forschungszentrum Julich. Also, Visit: Microsoft Free AI Training Course 2023 for Beginners | Course with Professional Certificate

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The Government of Germany offers a lot of Scholarships for International Students and Forschungszentrum Julich Scholarships are also one of the best scholarships for the Postdoctrate Degree Program. The Fully and Partially Funded Scholarship covers all expenses while studying in Germany. Apply for: National Foods Pakistan | Available Job Positions 2023

Forschungszentrum Julich is one of the best Universities founded in 1956 and situated in Jülich, Germany. Forschungszentrum Julich  is ranked 30th according to the Global Ranking of Universities. According to the QS World Ranking Of Universities, the ranking of this University is 164th Number. Forschungszentrum Julich is an international standard University providing Quality environments to Researchers worldwide. Never miss this opportunity to study for free in Germany. Full Details of the Postdoctoral Fellowships are in the below lines:

Details of 20 Ph.D. Degree Programs at Forschungszentrum Jülich:

  • Name of University: Forschungszentrum Julich
  • Offered Degree: Doctoral
  • Eligibility: International
  • Country: Germany
  • No. of Positions: 20
  • Deadline: Open Now

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1. Ph.D. Post in Quantitative Plant Sciences:

You are really interested in how plants adjust to various soil types and maximise intake of nutrients. You are interested in how roots work and ideally have some background in plant root research, such as from your master’s thesis work. You take pleasure in planning, carrying out, and analysing experiments. You appreciate math and scientific quantitative methods, and you have a soft spot for computer programming or modelling.

Application Deadline: Open until filled

Apply now

2. Ph.D. Post in Cryogenic CMOS for Quantum Computing:

Would you be interested in adding to the development of quick and energy-efficient computer systems as well as acquire knowledge to make yourself more competitive in the nanotechnology industry? You should work in Forschungszentrum Jülich’s Institute of Semiconductor Nanoelectronics (PGI 9). We concentrate on fundamental research that is application-oriented and uses cutting-edge hardware concepts for quantum and neuromorphic computing. PGI 9 possesses extensive expertise and experience in the fabrication of hybrid nanostructures made of semiconductor, dielectric (ferroelectric), superconductor, and metal materials, as well as the growth of semiconductor nanowires and quantum dots, group IV, III/V, III-nitrides, and topological insulator nanostructures, and their application in electronic and optical devices.

Application Deadline: Open until filled

Apply now

3. Ph.D. Post in Correlative Optical, X-Ray, and Electron Tomography:

It is necessary to consider length scales ranging from the molecular (nanometers) to the cellular range (micrometres) up to the complete brain in order to understand how neurons and entire brain regions are interconnected. Modern optical, serial electron microscopy, and synchrotron X-ray techniques will be integrated in the research project to address this multiscale difficulty. All facets of the approaches will be used in the research, including sample preparation, developing experiments, and managing and analysing enormous amounts of data. The research project combines expertise from the institutes INM-1 and JCNS-1 at Forschungszentrum Jülich with 3D-polarized light microscopy (3D-PLI), serial scanning electron microscopy (sSEM), and synchrotron scanning microbeam X-ray diffraction (sXRD).

Application Deadline: 7th August 2023

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4. Ph.D. Post in Physics and Neural Network-Based Combinatorial Optimization:

Doctoral research is available right now that would combine computer science, neural network hardware in neuromorphic systems, and statistical physics. The goal of the project is to address a broad class of significant NP-hard combinatorial optimization problems, such as scheduling, routing, and numerous resource allocation issues, which continue to pose challenges to science and industry. In order to create environmentally friendly physical systems, the strategy will combine insights from statistical physics to understand the hardness of such issues and the dynamics of solvers with biologically-inspired computational hardware approaches.

Application Deadline: 7th August 2023

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5. Ph.D. Post in Local Self-Supervision for Closed-Loop Visual Reasoning:

The goal of PGI-15 and INM-6 is to comprehend brain activity from a computational perspective and use this understanding to develop new technologies. The brain is remains unmatched in its capacity to adapt to complicated situations and does so in a very energy-efficient way, notwithstanding the success of current AI models. The goal of this project is to create energy-efficient networks that can reason in complicated situations by fusing local learning and neuro-morphic computing. You will work on context-modulated network architectures’ layer-local self-supervised learning rules. We will put these learning principles to the test in a multitask environment inspired by the brain, where a single network should be able to learn to efficiently do a vast variety of jobs. The networks will subsequently be included in a closed-loop graphic.

Application Deadline: 7th August 2023

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6. Ph.D. Post in Lattice Damage by Hydrogen at Sub-Threshold Ion Energies:

The most likely Carbon-Neutral energy source is Hydrogen (H), a common impurity in crystalline solids that interacts with lattice atoms and/or crystal defects to produce a variety of unusual characteristics. Unexpected lattice damage and subsequent H-supersaturated surface layers (HSSL) production in metals exposed to H plasma/ion irradiation with sub-threshold ion energies is one example of a special characteristic. Transmission electron microscopy (TEM), Nuclear Reaction Analysis (NRA), and atom probe tomography (APT) are just a few of the sophisticated experimental designs and cutting-edge techniques that can be used to’see’ H retained at defect microstructures in the nanometer-thick HSSL and further explore its formation mechanism. Experts from the Ernst Ruska-Centre and the Institute of Energy & Climate Research (IEK-4: Plasma Physics) will jointly oversee the research.

Application Deadline: 7th August 2023

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7. Ph.D. Post in DNP NMR-Based Surface Profiling of Functional Nanomaterials:

A vast range of materials’ functional characteristics depend heavily on their surfaces. The best and sometimes the only tool that can be used to offer structural information on disordered surfaces and surface functionalization is nuclear magnetic resonance (NMR) spectroscopy. The goal of developing and using surface-selective dynamic nuclear polarisation (DNP) NMR techniques, which target amyloid fibrils and battery interfaces, is to get closer to the sensitivity and selectivity constraints of regular NMR.

Application Deadline: 7th August 2023

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8. Ph.D. Post in Corrosion Resistant Coatings for PEM Electrolysis:

The major goal of the research is to create coverings that are corrosion-resistant and long-lasting, especially for the anode side of PEM electrolysis. The generated oxide scales and the deposited coatings will be thoroughly characterised in order to accomplish this. A quick optimisation will be possible with a combinatorial technique. Experts from the Ernst Ruska-Centre for Microscopy and Spectroscopy with Electrons (ER-C-2: Materials Science and Technology) and the Institute of Energy and Climate Research (IEK-1: Materials Synthesis and Processing) will jointly oversee the project.

Application Deadline: 7th August 2023

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9. Ph.D. Post in An Organoid Co-Culture System as a Model for Traumatic Brain Injury (TBI):

Diffuse astroglial and neuronal injury is the primary cause of traumatic brain injury (TBI), which is then followed by secondary injury cascades involving cellular toxicity, inflammation, and protein aggregation that is toxic. However, further research is needed to fully understand how glial cells interact in damage and regeneration. The majority of the two-dimensional models used to develop our present mechanistic understanding of TBI in in vitro models. To address the spatiotemporal complexities of cellular injury pressures on human interconnected neuronal-astroglial networks, the in vivo scenario is far more complex and calls for 3D impact platforms. The doctorate researcher will apply specific strain and compression signals modelling TBI using both the fast-forming, simplified neural co-culture systems (IBI-2) and 3D brain organoids containing microglia (INM-3) systems.

Application Deadline: 7th August 2023

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10. Ph.D. Post in CMOS Energy Harvesting for Big Data Applications:

A significant barrier to the development of semiconductor-based electronics, from small wearable devices to massive supercomputers, is the emission of surplus heat. In turn, by developing appropriate on-chip and CMOS compatible thermoelectric technologies, not only could internet-of-things applications like wearables be operated by body temperature alone, but energy reutilization at operating temperatures below 100°C could also significantly contribute to the reduction of greenhouse gas emissions caused by computing. The goal is to make SiGeSn into a brand-new, Si-compatible thermoelectric material that can function at body or room temperature.

Application Deadline: 7th August 2023

Apply now

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11. Ph.D. Post in Novel Glutamate Sensors for Neuroscience and Biotechnology:

Our brain’s primary excitatory neurotransmitter is glutamate, and disorders in glutamate homeostasis contribute to a number of neurological conditions. Glutamate is a key amino group donor in bacteria and is essential for the commercial manufacture of compounds in white biotechnology. A neuroscience and a biotechnology institute have joined forces to create innovative fluorescence sensors that allow the real-time monitoring of internal glutamate concentrations in living cells in order to better understand glutamate homeostasis in these two systems.

Application Deadline: 7th August 2023

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12. Ph.D. Post in Chloride homeostasis in neuronal and glial cells:

The focus of the PhD project is on the changes in chloride homeostasis in neurons and glia that occur when there is insufficient energy supply. We are curious about how central nervous system cells regulate volume, ion gradients, and transport activities when there is a depleted energy source, such as during vascular events. Numerous techniques are available, including fluorescence microscopy and fluorescence lifetime imaging in acute and cultured slice preparations, as well as neuronal and glial cell culture and cellular electrophysiology.

Application Deadline: 12th August 2023

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13. Ph.D. Post in Molecular-Beam Epitaxy of Topological Insulators or Superconductor Structures:

The realisation of next-generation quantum bits has a huge promise when topological insulators (TIs) and superconductors (SCs) are combined [1,2]. These quantum bits are thought to perform better than current qubits in terms of fault-tolerant computation since they manipulate so-called Majorana Excitations.

Application Deadline: Open until filled

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14. Ph.D. Position in Analysing biomass fractionation methods for producing cellulose fiber from non-wood biomass:

In the framework of integrated biorefinery systems for biomass fractionation, we seek outstanding applicants who are motivated by experimental work. Your main responsibilities are:

  • Different non-wood biomass types have been analysed chemically and structurally.
  • Experimental analysis of biomass separation methods based on organosolv.
  • Creation of process concepts that are appropriate for the proposed fractionation procedures.
  • Production and assessment of cellulose fibres generated from non-wood feedstock.
  • Studies of cellulose fibre applications.

Application Deadline: 31st July 2023

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15. Ph.D. Post in Design of proton conducting cells with co-ionic solid electrolyte for CO2 valorization:

The commodity chemical sector should urgently be paired with renewable electricity to become independent from fossil fuel resources as it is a significant contributor to world CO2 emissions. The electro-conversion of CO2 and H2O will be examined as a method for producing “green” compounds within the framework of a European initiative. The project will concentrate on planar and tubular short-stacks/modules based on proton/oxygen conducting ceramics that combine anodic steam electrolysis for hydrogen production with cathodic CO2 hydrogenation over customised and nano-engineered electrodes in order to meet the project’s scientific and technical goals. The proposed position will primarily focus on developing and designing innovative materials for co-ionic components, such as different ceramic-ceramic composites and processing cells for proof-of-concept short stacks/modules.

Application Deadline: 23rd July 2023

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16. Ph.D. Post in Simulation of co-ionically conductive solid electrolytes:

The commodity chemical sector should urgently be paired with renewable electricity to become independent from fossil fuel resources as it is a significant contributor to world CO2 emissions. The electro-conversion of CO2 and H2O will be examined as a method for producing “green” compounds within the framework of a European initiative. The project will concentrate on planar and tubular short-stacks/modules based on proton/oxygen conducting ceramics that combine anodic steam electrolysis for hydrogen production with cathodic CO2 hydrogenation over customised and nano-engineered electrodes in order to meet the project’s scientific and technical goals. The offered post will primarily concentrate on modelling and designing new co-ionic materials for CO2/H2O electro-conversion. As the project, this work will be done in a global and multidisciplinary setting.

Application Deadline: 23rd July 2023

Apply now

17. Ph.D. Position in Lattice Quantum Field Theory:

Researchers at Forschungszentrum Jülich (FZJ), in Germany, and across Europe can access one of the most potent supercomputing facilities in Europe thanks to the Jülich Supercomputing Centre (JSC). The “Simulation and Data Laboratory (SDL) Numerical Quantum Field Theory” within the division “HPC for Quantum Systems” seeks to comprehend the characteristics of strongly interacting/correlated matter. Its scientific goals range from the investigation of nuclear properties to strongly correlated electronic systems, such as carbon nanostructures. The SDL creates algorithms and implementations for various high-performance computing (HPC) systems in order to analyse these systems. The advertised position is a part of the “NRW-FAIR” consortium, which also includes the GSI/FAIR and universities in Bochum, Bonn, Münster, and Wuppertal.

Application Deadline: Open until filled

Apply now

18. Ph.D. Post in Prospective Ecological Assessment of Energy and CO2 Reduction Technologies:

Would you enjoy working in stimulating and dynamic atmosphere while actively participating in socioeconomic research on the reform of the energy system? Then we anticipate your assistance! The long-term characteristics of socio-technical energy systems are studied by the Institute of Energy and Climate Research – Systems Analysis and Technology Evaluation (IEK-STE) in the context of transformation and innovation. The investigation of socio-economic elements of technological advancement and their connections with the environment, economy, and society is done in an interdisciplinary team.

Application Deadline: 30th July 2023

Apply now

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19. Ph.D. Post in High-performance Simulation and Optimization of Energy Systems:

The European energy system is facing paradigm shift: away from system based on the import of fossil fuels and relying on centralised utilities run by large power plants, towards dynamic, supply- and demand-driven approach,  often organised  in local  energy communities where renewable energy sources are used  to meet urgent  demands arising from climate change in an ever-growing global economy. The integration of  various  infrastructures, such as the  electricity, gas, and  heating sectors, as well as  the changing energy  availability , present complicated issues for both the European energy system and local energy systems in maintaining an effective, sustainable, and stable energy supply.

Application Deadline: Open until filled

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20. Ph.D. Post in Optimal control theory for a full-stack superconducting quantum processor:

The Forschungszentrum Jülich’s Peter Grünberg Institute for Quantum Control (PGI-8) specialises on cutting-edge optimisation techniques  for developing  quantum technologies. By enabling massive computations for  the natural sciences, logistical issue solving, and high-performance computation, these  developing technologies hope to reshape our civilization and the way we think about  information. Our team was the  first to  apply quantum  optimal control techniques to many-body  quantum systems and quantum  computation. To address the complicated processes innate  to scalable quantum devices, this includes the construction of physical models and model reduction strategies as well as algorithmic advancements of insituoptimisation  and   machine  learning. The  Forschungszentrum  Jülich’s Peter  Grünberg Institute  for Quantum Control (PGI-8) specialises  on  cutting-edge optimisation   techniques for  developing quantum  technologies.

Application Deadline: Open until filled

Apply now

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