We are pleased to offer a selection of postgraduate taught modules that can be taken on an individual basis.

These modules are suitable for graduates or experienced practitioners who are looking to upskill or further their career, and who are happy to study alongside full-programme MSc students.

The selection of modules on offer relate to compound semiconductor theory, fabrication, photonics or application.

Credits

10 credit module (reference PXT301)

Dates

Autumn Semester. Please contact us for the latest timetable information.

Cost

£540 (for UK students)
£1220 (for international students)

Assessment

50% exam, 50% written assessment.

Outline description

Objectives

On completion of the module a student should be able to:

Delivery

Lectures 8hours x 2, guest lectures 2 hours, assignments, group assignment, laboratory and cleanroom tour.

Skills development

Fabrication skills, laboratory skills, collaborative skills, communication skills, writing skills, interpersonal skills.

Syllabus content

Credits

10 credit module (reference PXT302)

Dates

Spring Semester. Please contact us for the latest timetable information.

Cost

£540 (for UK students)
£1220 (for international students)

Assessment

50% exam, 50% written assessment

Outline description

Objectives

On completion of the module a student should be able to:

Delivery

Lectures (7 hours x 2), problem solving classes (4 hours), marked exercises, large assignment (written report or oral presentation on a research paper).

Skills development

Theoretical, mathematical and conceptual photonics skills, collaborative skills, project management, interpersonal skills, problem solving, investigative skills, critical analysis skills, application development skills, ethical behaviour.

Syllabus content

Passive Photonics:

Active photonics devices:

To help students develop collaborative skills and numerical problem solving skills, students will be asked to work in groups to solve problems and present solutions to the rest of the class. Four contact hours will be devoted to this task.

Towards the end of the lecture the students will be asked to select a research paper from a selected list and give an oral presentation to the rest of the class (20 minute presentation followed by discussion). Students will be encouraged to work in groups of two.

Credits

10 credit module (reference PXT303)

Dates

Spring Semester. Please contact us for the latest timetable information.

Cost

£540 (for UK students)
£1220 (for international students)

Assessment

40% written report, 40% practical-based assessment, 20% class test

Outline description

Compound Semiconductors offer the opportunity to develop Photonic Integrated Circuits in a similar fashion to the evolution of Silicon as the basis for Integrated Circuits for electronics in the 1970s and 1980s. In this module, we will study the nature of such a Compound Semiconductor generic foundry model for Application Specific Photonic Integrated Circuits, from the definition of basic building blocks based on simplest unit of physical mechanism to composite building blocks and full scale photonic integrated circuits and the physics they utilise.

The module studies the physical mechanisms, the systematic approach to generic technology, the simulation and design of such systems, considering manufacturing tolerances and methods of testing, and the characterisation of a simple on-chip optical link developed by the students. We will consider industrially relevant and cutting edge research examples based on Silicon and Compound Semiconductors to emphasise the conceptual similarities and differences. This will include relevant aspects of Compound Semiconductor Growth, Fabrication and Characterisation.

Students will understand the underlying physics of this important technology, understand the overarching approach, context and motivations for such a methodology, be introduced to computational design tools, the fabrication methods and experimental characterisation methods that are being taken-up by the Compound Semiconductor Industry.

Objectives

On completion of the module a student should be able to:

  • Understand the context and principles of a generic foundry approach and the elements that makes such an approach possible.
  • Critically analyse and synthesise these underlying principles and apply such an approach to unseen systems.
  • Understand underlying physical principles of photonic circuit elements and synthesise overall circuit functionality based on this understanding by combining elements.
  • Demonstrate a working knowledge of standard photonic design tools.
  • Design practical Photonic Integrated Circuit that can be manufactured and characterised, utilising a generic foundry.
  • Demonstrate a working knowledge of standard data acquisition apparatus and characterisation equipment to obtain, record, export and store experimental data.
  • Identify, adapt and combine appropriate data analysis techniques to extract information from experimental data and synthesise appropriate scientific conclusions.

Delivery

The module will consist of lectures, computing sessions, practical sessions and problem classes.

Skills development

Photonic Circuit Design skills, experimental physics, communications skills, personal skills, problem solving, investigative skill, computing skills, analytical skills, experience of active research laboratories.

Syllabus content

Entry requirements

Applicants should possess a good first degree (typically a 2:1 or equivalent), or equivalent work experience in a relevant discipline.

Applicants whose first language is not English must meet the University's English Language requirements.

In order to apply, you must provide us with certificates and transcripts relating to previous qualifications, a personal statement, and (where applicable) proof of your English language proficiency.

How to apply

Applicants should complete the module application and equal opportunties forms and return these to the Contunining Professional Development Unit.

Please contact the Continuing Professional Development Unit for further guidance on the application process.

Continuing Professional Development Unit