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the scientific applications by comparing results from quantum simulations directly with experimental measurements and classical simulations of quantum materials. This work will include benchmarking simulations by
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characteristics and system-level requirements, and their suitability for scientific applications. The candidate will develop modeling and simulation capabilities to quantitatively evaluate quantum, classical, and
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classical HPC infrastructure. The research involves both the hardware and software integration of quantum devices into the NCCS ecosystem and science applications carried out on hybrid systems. The OLCF has
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, technical direction, and career development guidance. Define and execute a strategic research agenda in advanced computing systems architecture, with emphasis on hybrid classical-quantum computing systems
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/or benchmark quantum algorithms for material science simulation on early fault-tolerant quantum computers, within an emerging hybrid quantum-classical software ecosystem. Quantitatively compare and
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Laboratory, is seeking a research and development (R&D) Scientist. Major Duties/Responsibilities: Participate in new and ongoing research on classical and quantum optics communications and sensing projects
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phenomenological and/or computational methods for quantum/classical dynamics in complex systems. Preferred Qualifications: Rich experience with modeling in spin or atomic dynamics will be highly advantageous Basic
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compilers and runtimes can unify classical, quantum, and analog execution models under a shared optimization framework. Basic Qualifications: Ph.D. in Computer Science, Computer Engineering, or a closely