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Future device: photonics, electronics, and phononics for functional integration

SYLLABUS

 

Course outline

 The quantum efficiency of optoelectronic devices, the transistor density which has been represented by the Moore's law, and the speed of the electronic devices quite recently showed the saturation behavior all at once. As various new alternatives are being tested such as quantum computing, machine-learning, novel nanomaterials, and heat dissipation engineering, the integrated picture of those distinct approaches is still lacking. Here, as an new prospective device concept, we consider  integration of photonics, electronics, and phononoics in terms of the mechanisms, experimental schemes, and analysis for engineering research. We survey the limit of current semiconductor industries, and consider the evolution and future outlook of research in the fields of photonics (such as photovoltaics, terahertz science, and photon computing), alterative materials, and heat manipulations in semiconductor devices. Finally we discuss the schemes to integrate the functional parts of photonics, electronics, and phononics.

 

Text book and reference 

 Review papers to be provided,

 G. Chen, Nanoscale energy transport and conversoin,

 Bulk Acoustic Wave Theory and Devices  by J.F. Rosenbaum.

 

Schedule

 1st week Moore's law ending and alternatives
 2nd week Future outline of photonics
 3rd week Novel 2D materials
 4th week Review of heat transport
 5th week Review of heat transport in low-dimensional materials
 6th week Heat revolutions in phononics
 7th week Phonon wave interference and thermal bandgap materials
 8th week Introduction: heat revolutions in phononics
 9th week Manipulation of phonon wave properties
 10th week Detection and manipulatoin of phonon phase
 11th week Coupling between electrons, phonons, and photons
 12th week Recent works on thermal diode
 13th week Phononic superlattice and bandgap
 14th week Phononic metamaterials
 15th week Integration of electronics and photonics: AIM photonics
 16th week Integration of electronics, photonics and phononics

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