In this work, we propose and simulate a novel amplifier based on Weyl semi-metals, e.g. WP2 and MoP2. These topological materials have been shown to exhibit extremely large magnetoresistance at cryogenic conditions. In the proposed device, a gate current induces a local magnetic field which controls the resistivity of the Weyl semi-metal channel and the resulting output current. Simulations of the magnetic fields are performed to optimize the device design, as well as thermal modeling to determine self-heating effects. Device operation is simulated using an analytical 3D model of magnetic fields and resistivity, and a small-signal model. Results show that the proposed device can provide high gain (20-30 dB) with extremely low DC power dissi...
Power dissipation in CMOS devices has become one of the major challenges for scaling in the recent y...
In this letter, we characterize the electrical properties of commercial bulk 40-nm MOSFETs at room a...
In this dissertation, I study the physical behavior of nanoscale magnetic materials and build spin-b...
The Weyl semimetal NbP exhibits an extremely large magnetoresistance and an ultra-high mobility. The...
© 2018 American Chemical Society. WTe2 is one of a series of recently discovered high mobility semim...
We present detailed analyses of magnetoconductivities in a Weyl semimetal within the Born and self-c...
<p>We developed an impedance bridge that operates at cryogenic temperatures (down to 60 mK) and in p...
The thermoelectric effect is the generation of an electrical voltage from a temperature gradient in ...
We report a magnetotransport study on type-II Weyl semimetal WP[subscript 2] single crystals. Magnet...
WTe2 is one of a series of recently discovered high mobility semimetals, some of whose properties ar...
Abstract- A complete electrical characterization of different types of GaAs field effect transistors...
This work proposes a 100 nm metamorphic InP HEMT with an InAs channel inset for cryogenic environmen...
This thesis demonstrates two new device concepts that are based on the tunneling and giant magnetore...
We report on electronic transport measurements of electrostatically gated nanodevices of the semimet...
This thesis describes an experimental study a new class of hybrid ferromagnetic/semiconductor device...
Power dissipation in CMOS devices has become one of the major challenges for scaling in the recent y...
In this letter, we characterize the electrical properties of commercial bulk 40-nm MOSFETs at room a...
In this dissertation, I study the physical behavior of nanoscale magnetic materials and build spin-b...
The Weyl semimetal NbP exhibits an extremely large magnetoresistance and an ultra-high mobility. The...
© 2018 American Chemical Society. WTe2 is one of a series of recently discovered high mobility semim...
We present detailed analyses of magnetoconductivities in a Weyl semimetal within the Born and self-c...
<p>We developed an impedance bridge that operates at cryogenic temperatures (down to 60 mK) and in p...
The thermoelectric effect is the generation of an electrical voltage from a temperature gradient in ...
We report a magnetotransport study on type-II Weyl semimetal WP[subscript 2] single crystals. Magnet...
WTe2 is one of a series of recently discovered high mobility semimetals, some of whose properties ar...
Abstract- A complete electrical characterization of different types of GaAs field effect transistors...
This work proposes a 100 nm metamorphic InP HEMT with an InAs channel inset for cryogenic environmen...
This thesis demonstrates two new device concepts that are based on the tunneling and giant magnetore...
We report on electronic transport measurements of electrostatically gated nanodevices of the semimet...
This thesis describes an experimental study a new class of hybrid ferromagnetic/semiconductor device...
Power dissipation in CMOS devices has become one of the major challenges for scaling in the recent y...
In this letter, we characterize the electrical properties of commercial bulk 40-nm MOSFETs at room a...
In this dissertation, I study the physical behavior of nanoscale magnetic materials and build spin-b...