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HomeAffiliationsRochester Institute of Technology

Affiliations: Rochester Institute of Technology

Weak Magnetic Fields Sensing Using Soft Ferrite Nanoparticles and MEMS

Lyshevski S.E., Rochester Institute of Technology, US
We perform the feasibility analysis of sensing weak magnetic fields by using soft ferrite nanoparticles embedded in molecular complexes. The sensing mechanisms are based on the deflection of molecular complexes and induced strain due to [...]

Control of MEMS-Technology Axial Topology MicroServos

Lyshevski S.E., Rochester Institute of Technology, US
Concurrent microsystems design, optimization, data-intensive analysis and hardware-software co-design of digital high-performance microelectromechanical systems (MEMS) have become major challenging themes. The major goal of this paper is to report-and-apply viable methodologies for design–and–implementation of MEMS [...]

Photon-Induced Biomolecular Sensing and Processing: Towards Engineering, Science and Medical Applications

Lyshevski S.E., Rochester Institute of Technology, US
This paper discusses and researches photon-induced sensing and processing exhibited by various vertebrates and invertebrates. In particular, rhodopsin photon receptor functionality and energetics are examined by applying quantum mechanics. We focus on fundamentals in order [...]

Single Molecule Quantum-Effect Electronic Devices

Lyshevski S.E., Rochester Institute of Technology, US
This paper examines multi-terminal quantum-effect devices. These devices are envisioned to be utilized in emerging molecular gates (Mgates) and neuronal hypercells for expected molecular integrated circuits. In addition to molecular-centered processing and memories, MEdevices are [...]

Biomolecular, Organic and Inorganic Processing Fabrics: Design and Synthesis of Processing Cells and Primitives

Lyshevski S.E., Rochester Institute of Technology, US
This paper focuses on solving various processing, networking, aggregation and interfacing problems by synthesizing, designing and utilizing molecular fabrics. The molecular processing platforms are comprised from modules, units and devices. For example, a brain neuron [...]

Analysis of Graphene, Molecular Wires and Inorganic Materials for Nanoelectronics and Low Power Integrated Circuits

Lyshevski S.E., Rochester Institute of Technology, US
This paper studies some emerging and prospective materials and possible solutions for envisioned nanoscaled microelectronic devices. To assess and evaluate the performance of envisioned scaled microelectronic devices, one applies quantum mechanics and other advanced methods. [...]

Sensing Weak Magnetic Field By Leaving Biosystems and A Magnetoreseption Mechanism For Navigation

Lyshevski S.E., Rochester Institute of Technology, US
This paper examines and demonstrates a possible mechanism of sensing weak magnetic fields in biosystems.

Benchmarking Performance and Physical Limits of Processing Electronic Device and Systems: Solid-State and Molecular Paradigms

Lyshevski S.E., Shmerko V., Yanushkevich S., Rochester Institute of Technology, US
We study physical limits and research performance estimates. The designer examines the device and system performance and capabilities using distinct performance measures, estimates, indexes and metrics. At the device level, we examine functionality, study characteristics [...]

Genomics and Proteomics: Information-Theoretic Analysis in Frequency Domain

Lyshevski S.E., Krueger F., Rochester Institute of Technology, US
We perform the frequency-domain analysis to examine large-scale genomic and proteomics data. This ensures qualitative and quantitative coherency.

Novel Design of Molecular Integrated Circuits and Molecular Nanoarchitectronics

Lyshevski S.E., Rochester Institute of Technology, US
This paper reports the results in synthesis and design of novel three-dimensional (3D) nanoscale integrated circuits (nanoICs). These nanoICs can be implemented utilizing multi-terminal molecular devices that exhibit unique electronic characteristics. Aggregated molecules form molecular [...]

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