most citedOptical imaging of strain in two-dimensional crystals

241 citations · 372 across the 4 of their papers we have counts for

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physics.app-ph2021

Sparse pixel image sensor

Lukas Mennel, Dmitry K. Polyushkin, Dohyun Kwak +1

As conventional frame-based cameras suffer from high energy consumption and latency, several new types of image sensors have been devised, with some of them exploiting the sparsity…

physics.app-ph2019

Low-voltage 2D materials-based printed field-effect transistors for integrated digital and analog electronics on paper

Silvia Conti, Lorenzo Pimpolari, Gabriele Calabrese +13

Paper is the ideal substrate for the development of flexible and environmentally sustainable ubiquitous electronic systems, which, combined with two-dimensional materials, could be…

physics.app-ph2019

Real-time image processing with a 2D semiconductor neural network vision sensor

Lukas Mennel, Joanna Symonowicz, Stefan Wachter +3

In recent years, machine vision has taken huge leaps and is now becoming an integral part of various intelligent systems, including autonomous vehicles, robotics, and many others.…

physics.app-ph2019

Analogue two-dimensional semiconductor electronics

Dmitry K. Polyushkin, Stefan Wachter, Lukas Mennel +6

While digital electronics has become entirely ubiquitous in today's world and appears in the limelight, analogue electronics is still playing a crucial role in many devices and app…

physics.app-ph2019131 cited

Device physics of van der Waals heterojunction solar cells

Marco M. Furchi, Florian Höller, Lukas Dobusch +3

Heterostructures based on atomically thin semiconductors are considered a promising emerging technology for the realization of ultrathin and ultralight photovoltaic solar cells on…

physics.app-ph2019

Meeting the Scaling Challenge for Post-Silicon Nanoelectronics using CaF2 Insulators

Yury Yu. Illarionov, Alexander G. Banshchikov, Dmitry K. Polyushkin +10

Two-dimensional (2D) semiconductors have been suggested both for ultimately-scaled field-effect transistors (FETs) and More-than-Moore nanoelectronics. However, these targets can n…