Chip Industry Technical Paper Roundup: Aug. 10
Ultrafast optical switching in doped semis; PIM simulation; foundry-compatible silicon photonics MEMS switching; GPU-accelerated switching-power analysis; neuromorphic computing; magneto-ionic HW security; bond front velocity; measuring heat movement.
New technical papers recently added to Semiconductor Engineering’s library:
| Technical Paper | Research Organizations |
|---|---|
| Ultrafast switching of optical properties in a doped semiconductor by intense femtosecond laser pulses 🔗 | Imperial College London, University of Exeter |
| PIMID: A Full-System Simulator with Intricacy and Diversity for Processing-in-Memory 🔗 | RIKEN, Keio University, Los Alamos National Laboratory, Oak Ridge National Laboratory |
| Zero-change foundry compatible silicon photonics MEMS optical switch 🔗 | UC Berkeley |
| DiffPower: GPU-Accelerated Differentiable Switching Power Analysis and Optimization 🔗 | Duke University, Synopsys |
| Beyond Peak TOPS/W: A System-Level Perspective on Hybrid Digital, Analogue and Neuromorphic Computing 🔗 | Nottingham Trent University, Imperial College London, Aston University |
| Mathematical Model Explains Bondwave Velocity and its Acceleration in Direct Wafer-Wafer Bonding 🔗 | imec |
| Voltage-Reconfigurable Magneto-Ionic Nanolayers in Dot Arrays for Probabilistic, Materials-Engineered Security Primitives 🔗 | Universitat Autònoma de Barcelona, INRiM, ICN2, ICREA |
| Spatiotemporal mapping of anisotropic thermal transport in GaN thin films via ultrafast X-ray diffraction 🔗 | MIT, SLAC, Stanford University, and Argonne National Laboratory |
Find more semiconductor research papers here.
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