Carmen G. Almudever

Carmen G. Almudever is Group Leader at the Quantum Computing Division of QuTech at Delft University of Technology.
She holds a PhD in Electronic Engineering from the Technical University of Catalunya (UPC BarcelonaTech), Spain. During her PhD she worked on “beyond-CMOS” devices as well as on novel reconfigurable architectures and dynamic computing systems. In 2012 she received a fellowship from Intel (Doctoral Student Honor Programme). In 2014 she joined QuTech at TU Delft to work on the definition and implementation of a scalable quantum computer architecture. She is currently one of the PIs of the Intel-Qutech collaboration and a co-PI of an Open Technology Program project (Dutch funding). Her research focuses on different aspects of the quantum computing stack including quantum programming languages and compilers, mapping of quantum algorithms, architecting and benchmarking of quantum computers, quantum error correction and fault tolerant quantum computation.

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Fundamentals of Quantum Information (edX) EdX
Delft University of Technology,DelftX

Fundamentals of Quantum Information (edX)

Dive into the world of quantum computing with our Fundamentals of Quantum Information course, designed for those who want to grasp the basics of quantum mechanics applied to information processing. This course will teach you about quantum circuits and entanglement, providing a solid foundation in quantum information theory.

Self Paced
Self-Paced
Architecture, Algorithms, and Protocols of a Quantum Computer and Quantum Internet (edX) EdX
Delft University of Technology,DelftX

Architecture, Algorithms, and Protocols of a Quantum Computer and Quantum Internet (edX)

Dive into the world of quantum computing with this comprehensive online course. Learn about quantum algorithms, error-correction methods, micro-architectures, compilers, programming languages tailored for quantum processors, and the protocols necessary for a functional quantum internet. Gain insights into building a large-scale quantum computer from scratch.

Self Paced
Self-Paced
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