Ubiquitous smart devices and internet of things create tremendous data every day, shifting computing diagram towards data-driven. Computing and memory units in traditional computers are physically separated, which leads to huge energy cost and time delay. Novel computer architectures bring computing and memory units together for data-intensive applications. These memory units need to be fast, energy efficient, scalable and nonvolatile. This dissertation concerns innovating new types of magnetic memory or spintronic devices to achieve ultrahigh energy efficiency and ultracompact size from a perspective of material and heterostructure design. Especially, we employ quantum materials to enable potentially unprecedented technological advances. T...
In-Memory computing has drawn many attentions as a promising solution to reduce massive power hungry...
Magnetic storage based on racetrack memory is very promising for the design of ultra-dense, low-cost...
Magnetic skyrmions as swirling spin textures with a nontrivial topology have potential applications ...
Since the dawn of Big Data, the exponentially increasing demands for larger data volumes and higher ...
Giant spin-orbit torque (SOT) from topological insulators (TIs) provides an energy efficient writing...
Spin accumulation originating from relativistic spin-orbit interaction can exert spin-orbit torque (...
Spin torque can toggle magnetization state of nanomagnets in magnetic tunnel junctions. In heavy met...
Non-volatile memory and computing technology rely on efficient read and write of ultra-tiny informat...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
Topological spin textures such as skyrmions are strong candidates for next-generationstorage units a...
Robust multi-level spin memory with the ability to write information electrically is a long-sought c...
During recent years, enormous progress has been made in the spintronics research field which utilize...
Robust multi-level spin memory with the ability to write information electrically is a long-sought c...
Spintronics is a branch of magnetism, which exploits the individual spin of electrons. The devices b...
International audiencecharge-spin conversion and ii) the speed of SOT switching. Generally, SOT in a...
In-Memory computing has drawn many attentions as a promising solution to reduce massive power hungry...
Magnetic storage based on racetrack memory is very promising for the design of ultra-dense, low-cost...
Magnetic skyrmions as swirling spin textures with a nontrivial topology have potential applications ...
Since the dawn of Big Data, the exponentially increasing demands for larger data volumes and higher ...
Giant spin-orbit torque (SOT) from topological insulators (TIs) provides an energy efficient writing...
Spin accumulation originating from relativistic spin-orbit interaction can exert spin-orbit torque (...
Spin torque can toggle magnetization state of nanomagnets in magnetic tunnel junctions. In heavy met...
Non-volatile memory and computing technology rely on efficient read and write of ultra-tiny informat...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
Topological spin textures such as skyrmions are strong candidates for next-generationstorage units a...
Robust multi-level spin memory with the ability to write information electrically is a long-sought c...
During recent years, enormous progress has been made in the spintronics research field which utilize...
Robust multi-level spin memory with the ability to write information electrically is a long-sought c...
Spintronics is a branch of magnetism, which exploits the individual spin of electrons. The devices b...
International audiencecharge-spin conversion and ii) the speed of SOT switching. Generally, SOT in a...
In-Memory computing has drawn many attentions as a promising solution to reduce massive power hungry...
Magnetic storage based on racetrack memory is very promising for the design of ultra-dense, low-cost...
Magnetic skyrmions as swirling spin textures with a nontrivial topology have potential applications ...