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Semiconductors (behaviour) PhD Projects, Programs & Scholarships

We have 10 Semiconductors (behaviour) PhD Projects, Programs & Scholarships

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  Index-near-zero-embedded optical resonators
  Dr M Ferrera
Applications accepted all year round

Funding Type

PhD Type

Optical cavities (nanoantennas, micro-ring resonators, Fabry-Perot nanocavities, etc.) immersed in an index-near-zero environment will be modelled, fabricated, and characterised.
  PhD Studentship in Nano-electronics: Resistive-switching memory devices (ReRAM/FeRAM/memristor) and its application in neuromorphic and in-memory computing systems
  Prof W Zhang
Applications accepted all year round

Funding Type

PhD Type

Applications are invited for a PhD position in the Department of Electronics and Electrical Engineering, Liverpool John Moores University (LJMU).
  A van der Waals heterostructure with anisotropic transport by stacking atomic 2D crystals
  Dr A Ilie, Dr M Mucha-Kruczynski
Applications accepted all year round

Funding Type

PhD Type

Materials or device structures with electron transport anisotropy are not trivial to create, while promising unconventional functionalities, such as 2D logic operations or electron waveguiding.
  The Simulation of Quantum Transport in Topological Insulators (TIs) and TI Based Nanoscale Field Effect Transistors (TI FETs)
  Dr G Edwards, Dr T. Papadopoulos
Applications accepted all year round

Funding Type

PhD Type

The field of Nanoelectronics is concerned with the materials, devices, circuits and systems relevant to contemporary integrated circuits (ICs).
  Nano-magnetism in atomically thin 2D quantum materials and their heterostructures
  Research Group: Inorganic Semiconductors
  Prof A Tartakovskii
Applications accepted all year round

Funding Type

PhD Type

Following the discovery of graphene, a large family of layered crystals has attracted significant attention. The properties of these materials range from superconductors and metals, to semiconductors and insulators.
  Strong light-matter interaction in van der Waals 2D materials: discovery of novel quantum states of the matter
  Research Group: Inorganic Semiconductors
  Prof A Tartakovskii
Applications accepted all year round

Funding Type

PhD Type

The isolation of single-atomic layer graphene has led to a surge of interest in a large family of layered crystals with strong in-plane bonds and weak van der Waals interlayer coupling.
  Sub-wavelength all-dielectric nano-photonics: 2D materials and beyond
  Research Group: Inorganic Semiconductors
  Prof A Tartakovskii
Applications accepted all year round

Funding Type

PhD Type

So far nano-photonics has dealt with dielectric devices relying on confining light in diffraction-limited volumes. Beating the diffraction limit by confining light on sub-wavelength scales has been only possible with plasmonic structures made of nano-structured metal, which unavoidably suffer from large optical losses.
  Van der Waals 2D materials: optical manifestations of the quantum physics of moiré superlattices
  Research Group: Inorganic Semiconductors
  Prof A Tartakovskii
Applications accepted all year round

Funding Type

PhD Type

Atomically-thin layers of two-dimensional materials can be assembled in vertical stacks (called ‘heterostructures’), which are held together by relatively weak van der Waals forces, allowing for coupling between monolayer crystals with incommensurate lattices and arbitrary mutual rotation, or ‘twist’.
  PhD Studentship Opportunity in Energy generation through electrogenic organism microsystems
  Dr C Avignone-rossa, Dr A Gruning
Applications accepted all year round

Funding Type

PhD Type

For the last 10 years, we have been working with bioelectrochemical systems, using electrogenic microorganisms able to transfer electrons to an external solid acceptor such as an electrode.
  Imaging overcritical currents in a high-Tc superconducting dynamo
  Dr C Bumby, Dr R Badcock
Applications accepted all year round

Funding Type

PhD Type

Superconducting dynamos are unusual devices which enable large DC currents to be injected into a closed superconducting coil. These small high-current (>1 kA) devices have the potential to revolutionise the design and use of superconducting magnets.
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