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15 PhD Degree-Fully Funded at Swiss Federal Institute of Technology in Lausanne, Switzerland

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Swiss Federal Institute of Technology in Lausanne, Switzerland  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 Swiss Federal Institute of Technology in Lausanne, Switzerland.

Eligible candidate may Apply as soon as possible.

 

(01) PhD Degree – Fully Funded

PhD position summary/title: STI – 2 PhD positions in Interfacial Imaging of Water: New Light on Cellular Hydration (LBP)

Nonlinear optical imaging and new ultrafast spectroscopic techniques have recently been developed in the Roke lab and used to image in real time interfacial water and electrostatic potentials on membrane interfaces of model membranes and in living cells.

In the current project: two new microscopes are to be constructed that will allow us to (1) image interfacial water in real time as well as the electrostatic field lines on the interface, and (2) image in real time membrane tension in vitro and in living systems. We will also provide a molecular ruler that links molecular conformation of lipids to mechanical forces. The new technology will first be applied in a controlled manner to in-vitro assays, after which measurements on living cells will be performed.

Deadline : Open until filled

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(02) PhD Degree – Fully Funded

PhD position summary/title: CDM – PhD Position in Operations, Economics and Strategy (OES)

The application deadline for early decisions is January 15th, 2024.
It is recommended that full dossiers are submitted as soon as possible for an early review.

Successful applicants will be highly motivated, excellent students with a background in engineering, applied mathematics, or economics. They should be familiar with optimization and analysis of mathematical models. Information about the type of research pursued is available on the OES website. Proficiency in English is required and applicants must have obtained the equivalent of at least one master’s degree at a first-rate institution. Additional work experience in industry is a plus. Information about the doctoral program (EDMT) at the EPFL College of Management of Technology is available at http://phd.epfl.ch/edmt

Deadline : April 10th, 2024 ,

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(03) PhD Degree – Fully Funded

PhD position summary/title: CDM – PhD position in Technology & Operations Management (TOM)

We are offering a position as a full-time PhD Student at the College of Management of Technology at EPFL, Lausanne.

Our institute, the Technology & Operations Management (TOM) Chair, focuses on issues which arise in technology-based enterprise such as forecasting the demand for newly launched products, modeling challenges in operations and supply chain management such as optimizing product assortments in an omni-channel environment, or improving supply chain resilience. We are also interested in boosting sustainability and technology adoption within entire supply networks. We base our work on stylized quantitative models that capture essential tradeoffs and offer managerial insights. We encourage industry collaboration to help bridge between theory and practice.

Deadline : Open until filled

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(04) PhD Degree – Fully Funded

PhD position summary/title: STI – Two PhD student positions in Interfacial Imaging of Water: New Light on Cellular Hydration (LBP)

Water is the liquid of life. It is intimately linked to our well-being. Without water, cell membranes cannot function. Charges and charged groups cannot be dissolved, self-assembly cannot occur, and proteins cannot fold. That water is intimately linked with life, we experience time and again when we quench our thirst, but how does this link work?

Osmosis is the flow of water across a (cell) membrane that separates two aqueous solutions with different concentrations of a solutes. Regulating osmotic pressure is a key survival strategy of cells and plays an important role in the functioning of every organism. How osmotic pressure and cell membrane tension are regulated on the molecular level is not known. It is the aim of the ERC Synergy Grant R2-Tension, a collaboration between EPFL (Prof. S. Roke) and the University of Geneva (Prof. A. Roux) to work this out. To do so, we will develop new technology and perform experiments in vitro and vivo.

Deadline : Open until filled

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(05) PhD Degree – Fully Funded

PhD position summary/title: STI – Two PhD Positions – Polymer Synthesis (LP)

The Polymers Laboratory at EPFL (lp.epfl.ch) has two open PhD positions for a project that focuses on the design and synthesis of block copolymers that will mimic the structure and properties of mussel-derived proteins.

The two positions are part of a larger, multidisciplinary project that involves other partners in Switzerland and in Canada and that seeks to integrate expertise from biology, materials science and polymer chemistry to produce strong and tough synthetic polymer materials using design and processing principles inspired by nature. We are looking for candidates with a strong background in polymer synthesis, and in particular with controlled polymerization techniques, and an interest to work on an interdisciplinary project at the interface of biology and materials science.

Deadline : Open until filled

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(06) PhD Degree – Fully Funded

PhD position summary/title: ENAC – PhD in Long-Term Assessment of Circular Transition Scenarios for the Built Environment (SXL)

The extension and transformation of our built environment are today responsible for a major part of greenhouse gas emissions, waste generation, and raw material extraction. While current climate crises call for reevaluating well-established dynamics in the construction and real-estate industries, circular economy strategies offer new opportunities to minimize the detrimental environmental impacts of buildings. But to what extent can they ensure the well-being of everyone within planetary boundaries?

Combining life-cycle assessment and urban twining methods with stakeholders interactions and expert knowledge on urban constructions and their long-term maintenance, the PhD thesis will (1) develop scenarios of change that public, commercial, and personal decision-makers could follow at the neighborhood, building, and dwelling scales in the short and long term horizons; (2) advance state-of-the-art computational methods for the long-term environmental assessment of circularity- and sustainability-transition scenarios at the scale of built districts ; (3) apply both developments to case-studies of neighborhoods in Switzerland and draw conclusions for policy-makers.

Deadline : 30.04.2024.

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(07) PhD Degree – Fully Funded

PhD position summary/title: STI – PhD positions in Microscopy and Spectroscopy for Interface and Phase Change (ETA-LAB)

Two to three PhD positions are available in Prof. Zhengmao Lu’s Energy Transport Advances Laboratory (ETA-LAB) in the Institute of Mechanical Engineering at EPFL, Switzerland. At the ETA-LAB (etalab.epfl.ch), we strive to obtain a deeper understanding of interfacial transport physics with various electron/optical microcopy and spectroscopy tools. We then aim to create high-performance, low-carbon-emission energy and water technologies leveraging the fundamental understandings.

Deadline : Open until filled

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(08) PhD Degree – Fully Funded

PhD position summary/title: STI – PhD student position available at the Laboratory for fundamental BioPhotonics (LBP)

We plan for a small team consisting of a Post-Doc and several PhD students to use and develop various novel experimental nonlinear optical scattering and imaging methods to achieve this. These methods will be applied to (1) simple 3D electrolyte in water solutions, (2) 2D electrolyte in water solutions and (3) water-ion-macromolecule systems. Linking all datasets will allow us to map both short – and long-range interactions and collective effects pertaining to all molecular actors. This allows to solve the puzzle surrounding concentrated electrolyte solutions and how they interact with macromolecules. These findings will shed new light on a variety of biological and technological processes. 

Deadline : Open until filled

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(09) PhD Degree – Fully Funded

PhD position summary/title: ENAC – PhD Positions in Earthquake Engineering / Structural Engineering (EESD)

You have a Master’s degree in structural/civil engineering and a strong background in structural mechanics and finite element simulations. Knowledge of masonry mechanics is of advantage. Good programming skills are required. You are proficient in spoken and written English.

Deadline : Open until filled

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(10) PhD Degree – Fully Funded

PhD position summary/title: ENAC – Fully funded, 4-year PhD position investigating: Impacts of Freeze-Thaw Cycles on Microbiome Assembly, Resilience, and Function in Alpine Soils (MACE)

This project will focus on the influence of cold-adapted microorganism on the metabolic capabilities of the entire microbiome; addressing the question: “What are the molecular and community scale impacts of increasing number of freeze-thaw cycles on the functioning, composition, and resilience of soil microbiomes?”. You will also investigate if inoculums of snow derived isolates with cryoprotectant properties can help maintain the functional and taxonomic diversity of soil microbiomes.

Deadline : Open until filled

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(11) PhD Degree – Fully Funded

PhD position summary/title: STI – PhD position in the Dynamic Quantum Materials Laboratory (DQML)

In the Dynamic Quantum Materials Laboratory we generate materials with properties that can be manipulated on a femtosecond time scale. By driving solids with intense ultrashort laser pulses, we directly address collective modes and operate at the fundamental timescales governing the dynamics in a material. These light-matter hybrids with tunable properties opens up new ways to understand how order forms in a quantum many-body system.

Deadline : Open until filled

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(12) PhD Degree – Fully Funded

PhD position summary/title: STI – PhD Position – Mid-IR Nanophotonics for Biosensing (BIOS)

In a well-established laboratory, the PhD student will explore next-generation bioanalytical devices operating within the infrared band of the electromagnetic spectrum for chemical specific & conformational sensitive detection of biomolecules, biological and chemical samples. PhD work will exploit novel concepts including surface enhanced infrared absorption spectroscopy (SEIRA) enabled by nanophotonic metasurfaces, hyperspectral imaging, state-of-the-art infrared equipment such as quantum cascade lasers and focal-plane array detectors as well as AI-based data science techniques. We expect that newly developed sensors will find numerous applications such as for the study and diagnosis of diseases triggered by protein misfolding as in neurodegenerative disorders, drug discovery and safety. Anticipated tasks include preparing a research plan, numerical design and fabrication of nanophotonic chips, reconfiguring optical set-ups through incorporation of novel imaging and spectroscopy techniques, microfluidics integration, optimizing bioassays and surface chemistry, handling biological samples, performing optical/biological experiments, data analysis, reporting and disseminating research outcome.

Deadline : Open until filled

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(13) PhD Degree – Fully Funded

PhD position summary/title: ENAC – PhD position in ecohydrological modeling for climate-smart agriculture (CHANGE)

The Catchment Hydrology and Geomorphology Lab (CHANGE) led by Prof. Sara Bonetti at EPFL in Sion is looking for a PhD student to work on ecohydrological modeling for climate-smart agriculture.

Sustainable food production requires finding the right balance between food and nutritional security while protecting the environment and addressing climate issues. Climate‐smart agriculture has been promoted as a systematic approach for developing agricultural strategies to ensure food security in the context of climate change. However, a detailed quantification of the effects of such practices across different environmental settings and under future climates is currently missing, making it difficult to assess their actual potential. As a PhD student you will have the opportunity to further current understanding in this field through a combination of data analysis and modeling approaches.

Deadline : Open until filled

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(14) PhD Degree – Fully Funded

PhD position summary/title: SB – STI – PhD Student position in Nanoscale Quantum Photonics (HYLAB)

As a successful candidate of a young team, you will shape the future of photonics-based quantum science and technology in our young and dynamic lab. You will develop first-of-their kind hybrid platforms that enable complex metrology functions, quantum sensing or quantum spectroscopy.

You will help kick off diverse aspects of the experimental effort: technical (setting up an optical measurement setup design inside a dilution refrigerator, including design of high-frequency electronics and custom-tailored mechanical components) and conceptual (develop the theory of quantum measurement and generation schemes, explore measurement precision limits as well as advantages of quantum light for sensing).

Deadline : Open until filled

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(15) PhD Degree – Fully Funded

PhD position summary/title: SB – Two Ph.D. positions in Photonic Integrated Technologies at EPFL (LPQM)

The first topic concerns advancing optical microcombs (i.e., chip-scale frequency combs) towards their technological deployment. Optical combs are a Nobel Prize-winning invention that currently still requires complex and bulky photonic components. Advances in nonlinear photonic integrated circuits allow the creation of chip-scale frequency combs that can dramatically reduce size and weight, paving the way to novel applications in many fields: from astrophysical spectrometer calibration for exoplanets detection, to petabytes-per-second optical data communications. This project will advance the state of the art by incorporating novel materials – such as Erbium for implication – and by exploring novel concepts such as electro-optic combs in Lithium Niobate or Tantalate, for phase coherent microwave to optical links, which can form the basis of future chip-scale optical atomic clocks. Similarly, these structures can be used for next generation of multiple-laser LiDAR sensors.

The second topic concerns exploring novel states of light that exist in driven dissipative nonlinear resonators. While many processes in nature exhibit emergent phenomena, it has not been possible to study them in well-controlled optical systems has not yet been possible. Microresonators offer the opportunity to study states and processes that give rise to optical patterning and are ubiquitous in nature, ranging from hydrodynamics to biology to chemistry.  The study entails numerical simulation of nonlinear processes in complex integrated photonic structures, with the aim of understanding emergent nonlinear phenomena in laser-driven photonic chip-based microresonators. 

Deadline : Open until filled

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About Swiss Federal Institute of Technology in Lausanne, Switzerland –Official Website

The École polytechnique fédérale de Lausanne (EPFL; English: Swiss Federal Institute of Technology in Lausanne; German: Eidgenössische Technische Hochschule Lausanne) is a public research university in Lausanne, Switzerland. Established in 1969, EPFL has placed itself as a public research university specializing in engineering and natural sciences.

EPFL is part of the ETH Domain, which is directly dependent on the Federal Department of Economic Affairs, Education and Research.

Inspired by French engineering school École Centrale Paris, EPFL was established to “train talented engineers in Switzerland”. The school has an urban campus that extends alongside Lake Geneva, and includes the EPFL Innovation Park as well as university research centers and affiliated laboratories.

 

 

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