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Mayank Jain

Researcher at Technical University of Denmark

Publications -  289
Citations -  14344

Mayank Jain is an academic researcher from Technical University of Denmark. The author has contributed to research in topics: Optically stimulated luminescence & Luminescence. The author has an hindex of 50, co-authored 271 publications receiving 12429 citations. Previous affiliations of Mayank Jain include Stanford University & Texas Instruments.

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Proceedings ArticleDOI

Achieving single channel, full duplex wireless communication

TL;DR: In this paper, a single channel full-duplex wireless transceiver is proposed, which uses a combination of RF and baseband techniques to achieve FD with minimal effect on link reliability.
Proceedings ArticleDOI

Practical, real-time, full duplex wireless

TL;DR: Experimental results show that a re- design of the wireless network stack to exploit full duplex capability can result in significant improvements in network performance.
Journal ArticleDOI

Applications of self-interference cancellation in 5G and beyond

TL;DR: Self-interference cancellation offers the potential to complement and sustain the evolution of 5G technologies toward denser heterogeneous networks and can be utilized in wireless communication systems in multiple ways, including increased link capacity, spectrum virtualization, any-division duplexing (ADD), novel relay solutions, and enhanced interference coordination.
Journal ArticleDOI

Laboratory fading rates of various luminescence signals from feldspar-rich sediment extracts

TL;DR: In this article, the authors determined fading rates for various sedimentary feldspar samples using different stimulation and detection windows, and found that the initial and final parts of the OSL signal bleach at approximately the same rate.
Journal ArticleDOI

A robust feldspar luminescence dating method for Middle and Late Pleistocene sediments

TL;DR: In this paper, the authors proposed a post-IR IRSL (IRSL) method for the dating of Middle and Late Pleistocene sediments, which appears to avoid signal instability.