Global ETD Search

Search theses and dissertations gathered from participating repositories worldwide. Every result links back to the library that holds it. No account is needed.

Results

Showing 1 to 14 of 14 for “"Beyond-CMOS"”.

  1. Tunable spin-charge conversion in vanadium dioxide

    … of electrons and are emerging as a promising beyond CMOS technology. Fast, scalable, low energy consumption magnetic memories and nonvolatile spin logic devices have been demonstrated utilizing spin-orbit-torque based magnetization switching. A large, pure spin current is crucial for these …

    mit Repository record for Tunable spin-charge conversion in vanadium dioxide (opens in a new tab)

  2. Magnetic domain wall devices : from physics to system level application

    … Spin based devices show promises also for beyond-CMOS, in memory computing and neuromorphic accelerators. In the future cognitive era, nonvolatile memories hold the key to solve the bottleneck in the computational performance due to data shuttling between the processing and the memory …

    mit Repository record for Magnetic domain wall devices : from physics to system level application (opens in a new tab)

  3. Reliable spin-based computing systems

    … efficiency. However, computational scaling beyond the electronics based on Moore's law requires the adoption of alternate state variables including spin. Spin based devices offer several advantages such as low device count and non-volatility, and have the potential to beat the energy-delay …

    uiuc Repository record for Reliable spin-based computing systems (opens in a new tab)

  4. Tunneling nanoelectromechanical switches based on compressible self-assembled molecules

    … the prospects of squitches as ultra-low power beyond-CMOS devices. A scalable and versatile dielectrophoretic trapping technique for fabrication of devices involving nanoparticles in design has also been developed in this thesis as a critical fabrication step.

    mit Repository record for Tunneling nanoelectromechanical switches based on compressible self-assembled molecules (opens in a new tab)

  5. Architecture and CAD for carbon nanomaterial integrated circuits

    … be given further study as a potential “Beyond CMOS” technology. Unlike traditional devices with a silicon channel, these transistors have channels made from semiconducting carbon nanomaterials in the form of carbon nanotubes (CNTs) and graphene nanoribbons (GNRs). The research community …

    uiuc Repository record for Architecture and CAD for carbon nanomaterial integrated circuits (opens in a new tab)

  6. Iron Garnet Thin Films for Integrated Photonics and Spintronics

    In pursuit of beyond CMOS computing, this thesis aims to provide material solutions for both photonic interconnects and ultra-fast spintronic memory. Iron garnet thin films are uniquely suited for both applications as they have: 1) strong magneto-optic (MO) response and low optical absorption at …

    mit Repository record for Iron Garnet Thin Films for Integrated Photonics and Spintronics (opens in a new tab)

  7. Quantum transport and bulk calculations for graphene-based devices

    … and device-to-device variability. Going beyond conventional switching but staying with the graphene material system, to model electron-hole condensation in two graphene monolayers separated by a tunnel dielectric potentially beyond room temperature, I developed a self-consistent atomistic …

    texas Repository record for Quantum transport and bulk calculations for graphene-based devices (opens in a new tab)

  8. Fundamentals, Voltage Control and Novel Application of Exchange Bias in Magnetic Thin Films

    … physical limits, there is a growing need for beyond-CMOS technologies. Spintronics, which aims to utilize the electron's spin in magnetic thin films for data storage and manipulation, is a promising alternative. Among the rich physical interactions that appear in magnetic thin films, the …

    mit Repository record for Fundamentals, Voltage Control and Novel Application of Exchange Bias in Magnetic Thin Films (opens in a new tab)

  9. Selective area chemical vapor deposition of graphene

    For more than half a century silicon-based CMOS transistors have been scaled continuously to fulfill the projections of Moore’s law and served as the backbone of semiconductor electronics. This scaling trend, however, is now approaching fundamental limits on computing speed and energy efficiency. …

    uiuc Repository record for Selective area chemical vapor deposition of graphene (opens in a new tab)

  10. Cross-layer methods for energy-efficient inference using in-memory architectures

    … product (EDP). In-memory architectures using beyond-CMOS technologies such as STT-MRAM and ReRAM crossbars have become popular due to their advantages in terms of density and scalability. However, such resistive crossbars suffer from inaccurate writes due to device variability and …

    uiuc Repository record for Cross-layer methods for energy-efficient inference using in-memory architectures (opens in a new tab)

  11. Design of robust ultra-low power platform for in-silicon machine learning

    … sensing, or emerging stochastic fabrics (e.g., CMOS operating in near-threshold voltage or voltage overscaling, and beyond CMOS devices). This dissertation presents the Compute VRM (C-VRM) to embed the information processing into the energy delivery subsystem. The C-VRM employs multiple voltage …

    uiuc Repository record for Design of robust ultra-low power platform for in-silicon machine learning (opens in a new tab)

  12. Molecular Sensors at the Nanoscale: Modeling and Technology

    L'abstract è presente nell'allegato / the abstract is in the attachment

    poli-torino Repository record for Molecular Sensors at the Nanoscale: Modeling and Technology (opens in a new tab)