Synopsys Quantumatk

Synopsys Quantumatk company information, Employees & Contact Information

The QuantumATK team at Synopsys develops the QuantumATK simulation tool for fast and reliable atomic-scale modeling of nanostructure. QuantumATK is fully supported and delivered in an easy-to-use interface, tailored from state-of-the-art methods, and developed by experts to the specifications of our customers. Who we are The QuantumATK team are former employees of QuantumWise which was acquired by Synopsys Inc. in 2017. At present, the QuantumATK team are part of Synopsys TCAD and has more than 30 employees, working with developing the QuantumATK code and supporting the users. Most of the employees have a Ph.D. in physics or chemistry, and/or are seasoned programmers with long experience in numerical modeling and GUI development. Our aim and philosophy We position ourselves as a facilitator by interacting with both the research community to extract the latest state-of-the-art methods and techniques, and with researchers in companies and universities that seek to utilize these tools. We strive to deliver these advanced numerical tools in an easy-to-use package. Our primary aim is to make the latest developments within atomic-scale modeling available to enable technologists to solve real life problems within the materials and semiconductor industry. Unlike most other commercial companies offering software for atomic-scale modeling, we develop our own code from the bottom up, and we have the in-house expertise to develop novel functionality all the way down to the quantum-mechanical level. Our software is a constant work in progress, and our development is test-driven and guided by customer requests and requirements. We spend a lot of energy on ensuring the quality and reliability of the software. Can we help you solve a problem? If you have any questions related to our products or company, please get in touch with us (quantumatk@synopsys.com), as we would love to hear from you! Requests and feedback from our customers is what helps us evolve our products.

Company Details

Employees
19
Founded
-
Address
Fruebjergvej 3, Postbox 4,denmark
Industry
Nanotechnology Research
NAICS
Research and Development in Nanotechnology
HQ
Copenhagen
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News

Electronic properties of β -TaON and its surfaces for solar water splitting - ScienceDirect.com

Electronic properties of β -TaON and its surfaces for solar water splitting ScienceDirect.com

Spin-neutral currents for spintronics - Nature

Spin-neutral currents for spintronics Nature

Synopsys (SNPS) Buys QuantumWise, Grows through Acquisitions - Yahoo Finance

Synopsys (SNPS) Buys QuantumWise, Grows through Acquisitions Yahoo Finance

Soft x-ray excitonics - Science | AAAS

Soft x-ray excitonics Science | AAAS

Interface-induced topological phase and doping-modulated bandgap of two-dimensioanl graphene-like networks - IOPscience

Interface-induced topological phase and doping-modulated bandgap of two-dimensioanl graphene-like networks IOPscience

Structural and electronic properties of oxygen defective and Se-doped p -type BiVO - ScienceDirect.com

Structural and electronic properties of oxygen defective and Se-doped p -type BiVO ScienceDirect.com

On the origins of strain inhomogeneity in amorphous materials - Nature

On the origins of strain inhomogeneity in amorphous materials Nature

Multifunctional structural design of graphene thermoelectrics by Bayesian optimization - Science | AAAS

Multifunctional structural design of graphene thermoelectrics by Bayesian optimization Science | AAAS

Probing electron-phonon excitations in molecular junctions by quantum interference | Scientific Reports - Nature

Probing electron-phonon excitations in molecular junctions by quantum interference | Scientific Reports Nature

A Cu-atom-chain current channel with a width of approximately 0.246 nm on (5, 0) single-wall carbon nanotube - Nature

A Cu-atom-chain current channel with a width of approximately 0.246 nm on (5, 0) single-wall carbon nanotube Nature

Plasmonic tunnel junctions for single-molecule redox chemistry - Nature

Plasmonic tunnel junctions for single-molecule redox chemistry Nature

Observation of negative differential resistance in mesoscopic graphene oxide devices - Nature

Observation of negative differential resistance in mesoscopic graphene oxide devices Nature

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