The Matter Simulation (R)evolution

21 November 2017, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

To date, the program for the development of methods and models for atomistic and continuum simulation directed toward chemicals and materials has reached an incredible degree of sophistication and maturity. Currently, one can witness an increasingly rapid emergence of advances in computing, artificial intelligence, and robotics. This drives us to consider the future of computer simulation of matter from the molecular to the human length and time scales in a radical way that deliberately dares to go beyond the foreseeable next steps in any given discipline. This perspective article presents a view on this future development that we believe is likely to become a reality during our lifetime.

Keywords

Theoretical chemistry
Computational Chemistry
Materials Science
Artificial Intelligence
Machine Learning
Robotics
Augmented Reality
Quantum Computing
Quantum Information
Quantum Simulation
Turing Test
Perspective
Grand Challenges
Chemistry

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