activity
20172021
most citedBroadly-tunable smart glazing using an ultra-thin phase-change material

4 citations · 6 across the 5 of their papers we have counts for

collaborators

5 papers

cs.ET2021

Chalcogenide optomemristors for multi-factor neuromorphic computation

Syed Ghazi Sarwat, Timoleon Moraitis, C David Wright +1

Neural processing on devices and circuits is fast becoming a popular approach to emulate biological neural networks. Elaborate CMOS and memristive technologies have been employed t…

cond-mat.mtrl-sci2021

Measurement of onset of structural relaxation in melt-quenched phase change materials

Benedikt Kersting, Syed Ghazi Sarwat, Manuel Le Gallo +5

Chalcogenide phase change materials enable non-volatile, low-latency storage-class memory. They are also being explored for new forms of computing such as neuromorphic and in-memor…

cond-mat.dis-nn20212 cited

Phase Change Memtransistive Synapse

Syed Ghazi Sarwat, Benedikt Kersting, Timoleon Moraitis +2

In the mammalian nervous system, various synaptic plasticity rules act, either individually or synergistically, and over wide-ranging timescales to dictate the processes that enabl…

physics.app-ph20194 cited

Broadly-tunable smart glazing using an ultra-thin phase-change material

Nathan Youngblood, Clément Talagrand, Benjamin Porter +8

For many applications, a method for controlling the optical properties of a solid-state film over a broad wavelength range is highly desirable and could have significant commercial…

cond-mat.mes-hall2017

Scaling limits of graphene nanoelectrodes

Syed Ghazi Sarwat, Pascal Gehring, Gerardo Rodriguez Hernandez +4

Graphene is an ideal material for fabricating atomically thin nanometre spaced electrodes. Recently, carbon-based nanoelectrodes have been employed to create single-molecule transi…