Photonic van der Waals integration from 2D materials to 3D nanomembranes
The integration of functional nanomaterials and heterostructures with photonic architectures
has laid the foundation for important photonic and optoelectronic applications. The advent of …
has laid the foundation for important photonic and optoelectronic applications. The advent of …
Ultrathin ferroic HfO2–ZrO2 superlattice gate stack for advanced transistors
With the scaling of lateral dimensions in advanced transistors, an increased gate
capacitance is desirable both to retain the control of the gate electrode over the channel and …
capacitance is desirable both to retain the control of the gate electrode over the channel and …
3D integration enables ultralow-noise isolator-free lasers in silicon photonics
Photonic integrated circuits are widely used in applications such as telecommunications and
data-centre interconnects,,,–. However, in optical systems such as microwave synthesizers …
data-centre interconnects,,,–. However, in optical systems such as microwave synthesizers …
In‐sensor computing: materials, devices, and integration technologies
The number of sensor nodes in the Internet of Things is growing rapidly, leading to a large
volume of data generated at sensory terminals. Frequent data transfer between the sensors …
volume of data generated at sensory terminals. Frequent data transfer between the sensors …
Scalable CMOS back-end-of-line-compatible AlScN/two-dimensional channel ferroelectric field-effect transistors
Three-dimensional monolithic integration of memory devices with logic transistors is a
frontier challenge in computer hardware. This integration is essential for augmenting …
frontier challenge in computer hardware. This integration is essential for augmenting …
Two-dimensional materials for next-generation computing technologies
Rapid digital technology advancement has resulted in a tremendous increase in computing
tasks imposing stringent energy efficiency and area efficiency requirements on next …
tasks imposing stringent energy efficiency and area efficiency requirements on next …
Memory devices and applications for in-memory computing
Traditional von Neumann computing systems involve separate processing and memory
units. However, data movement is costly in terms of time and energy and this problem is …
units. However, data movement is costly in terms of time and energy and this problem is …
Bioinspired interactive neuromorphic devices
The performance of conventional computer based on von Neumann architecture is limited
due to the physical separation of memory and processor. By synergistically integrating …
due to the physical separation of memory and processor. By synergistically integrating …
Logic-in-memory based on an atomically thin semiconductor
The growing importance of applications based on machine learning is driving the need to
develop dedicated, energy-efficient electronic hardware. Compared with von Neumann …
develop dedicated, energy-efficient electronic hardware. Compared with von Neumann …