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Solid state Physics (group) PhD Projects, Programs & Scholarships

We have 21 Solid state Physics (group) PhD Projects, Programs & Scholarships

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  Fundamental Excitations of monolayer 2D Semiconductors
  Research Group: Quantum, Light & Matter
  Prof D Smith
Application Deadline: 31 March 2020

Funding Type

PhD Type

Project description. We are offering a PhD position suitable for a candidate who has a real interest in understanding the properties of technologically important materials.
  PhD position in the field of nonlinear and quantum optics with polaritons in semiconductor nanostructures
  Research Group: Inorganic Semiconductors
  Dr D Krizhanovskii
Applications accepted all year round

Funding Type

PhD Type

Recent advances in semiconductor nano-technology lead to a new generation of robust controllable structures where manipulation of coupling between light and matter can be performed on a submicrometer scale.
  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.
  EPSRC DTP studentship: Few-photon quantum optics in the solid state
  Dr A Bennett
Application Deadline: 31 March 2020

Funding Type

PhD Type

We seek a motivated PhD student to study the interactions, scattering and emission of quantum light within solid state devices. Photons are ideal carriers of quantum information, being fast, cheap and easy to encode with quantum-information carried in their polarisation, phase, time or path degrees of freedom.
  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.
  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’.
  Ph.D. Scholarship in the area of thermochemical energy storage
  Prof CE Buckley, Dr TD Humphries
Applications accepted all year round

Funding Type

PhD Type

The Hydrogen Storage Research Group (HSRG) at Curtin University has a rich history in developing hydrogen storage materials for multiple applications.
  CMOS Quantum Computer
  Prof E Blokhina, Prof R.B.S Staszewski
Application Deadline: 29 February 2020

Funding Type

PhD Type

The UCD School of Electrical and Electronic Engineering seeks applications from graduates with an interest in quantum technologies, quantum computing and CMOS circuit design.
  Joint PhD with University of Bayreuth: Exciton Logic Gates
  Prof P Mulvaney
Application Deadline: 31 March 2020

Funding Type

PhD Type

Optical circuitry remains a long-cherished goal in the fields of high-density data storage and ultrafast communications. Logic gates can be used to modulate energy flow for energy-harvesting applications or monitored in photo-mathematical operations (optical logic).
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