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Doctor of Philosophy in Electrical and Computer Engineering - Solid State Devices and Nanotechnology (Integrated Photonics and Optoelectronics with Quantum Confined Heterostructures)
We provide Doctor of Philosophy in Electrical and Computer Engineering - Solid State Devices and Nanotechnology (Integrated Photonics and Optoelectronics with Quantum Confined Heterostructures). We will wholeheartedly provide you with the best quality educational resources and support. We are committed to helping every student achieve greater success in this professional field and lay a solid foundation for future career development.
Doctor of Philosophy in Electrical and Computer Engineering - Solid State Devices and Nanotechnology (Integrated Photonics and Optoelectronics with Quantum Confined Heterostructures)

  

About the course

Research projects in the Solid-State and Nanotechnology area cover a wide variety of topics. Experimental research in integrated photonics and optoelectronics spans work varying from device design and fabrication, device physics, optoelectronic integrated circuits and photonic integrated circuits for communication, imaging and sensing, solar cells, to the integration of III-V based photonics with Si CMOS. In many of these areas, the experimental work is complemented by theory, modeling and analysis. Research in organic and molecular electronics includes organic field-effect transistors, integrated circuits and light-emitting devices on glass and plastic substrates, hydrogenated amorphous silicon thin-film transistors and active-matrix arrays on glass and plastic substrates for flat panel displays and sensors, and active-matrix organic light-emitting display technology. Faculty are leaders in the research of high performance electronic and optoelectronic devices based on high quality compound semiconductor materials and complex semiconductor heterostructures. Research is being conducted in the epitaxial growth of compound semiconductor materials, where three molecular beam epitaxy systems and one metal-organic chemical vapor deposition system are currently under extensive use for the research of new materials and to support device research. Scholarships - View all scholarships Internships

  

Start dates and prices

Course fees are indicative and should be used as a guide. Speak to a counsellor to get an accurate price.

  Duration: 8 Semester(s)Fees: Not available

Intake Location
Fall (August), 2024 Ann Arbor
Fall (August), 2025 Ann Arbor

  

How to apply

Entry requirements for University of Michigan - Ann Arbor

TOEFL ibt: 84, TOEFL Paper/Pencil TOEFL and TWE (For tests taken prior to July 2017): 560 and Revised Paper Delivered Test (For tests taken July 2017 or later) An overall score is not provided for this test. Minimum section scores: Reading = 23, Listening = 23, Writing = 21. IELTS: 6.5.

  Official Transcripts from all Universities/College attended

  

English language requirements

  6.5

  Overall IELTS band score

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  About IELTS

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  TOEFL Internet based overall score: 84.0

  

Application deadline:

This date isn’t available – speak to an IDP counsellor to get detailed information.

  

Further information

Career outcomesIf you aren’t eligible for the above entry requirements, you might want to explore pathway options at University of Michigan - Ann Arbor. If you want to find out more, please speak to our counsellors.

  Pathway options to study at this institution

  

Reviews and rankings

World ranking

  23rd / 1250

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