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Heriot-Watt University, School of Engineering & Physical Sciences Semiconductors PhD Projects, Programs & Scholarships

We have 6 Heriot-Watt University, School of Engineering & Physical Sciences Semiconductors PhD Projects, Programs & Scholarships

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  Designer two-dimensional heterostructures for quantum photonics
  Dr B D Gerardot
Applications accepted all year round

Funding Type

PhD Type

Two-dimensional semiconductors, which can be easily combined to create entirely new materials, offer completely unique opportunities to design the electronic and optical properties of individual particles at the quantum level.
  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.
  Next Generation Components for Quantum Communication
  Prof G Buller
Applications accepted all year round

Funding Type

PhD Type

Quantum Communications has the potential to provide verifiably secure communications, guaranteed by the laws of quantum mechanics.
  PhD - Optimisation of interferometry-based volume holography for industrial applications (Ceres Holographics)
  Prof D Reid, Prof G Turnbull
Application Deadline: 30 January 2020

Funding Type

PhD Type

Project Description. Volume holograms based on photopolymers are one of the most promising platforms to develop commercial applications of holographic optical elements at industrial level.
  Quantum-Enhanced Imaging in Extreme Environments
  Prof G Buller
Applications accepted all year round

Funding Type

PhD Type

Single-Photon and photon-pair correlated imaging has opened up a number of exciting possibilities for three-dimensional imaging in extreme environments such as imaging through obscurants (eg fog, smoke), and underwater.
  Ultra-nonlinear epsilon-near-zero flat optics
  Dr M Ferrera
Applications accepted all year round

Funding Type

PhD Type

Design and characterisation of different artificial materials for the design of ultra-fast tuneable photonics devices. Giant epsilon-near-zero nonlinearities are targeted to allow subwavelength manipulation of light in both classic and quantum regime.
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