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High-performance, differentiable quantum state-vector & tensor network simulator in 100% pure JAX (no classical framework overhead). Accelerated on NVIDIA GPUs and Google Cloud TPU v6e-64/v5e VM clusters up to 37 qubits! Supported by Google's TPU Research Cloud (TRC) program.
This project implements Shor's Algorithm in IBM's Qiskit SDK in simulation, to link with the simulators from IBM Q Experience. It was done in the Quantum Information Project Course (AP3421) at TU Delft in the 2nd Quarter of 2018/2019. Authors: Rui Maia and Tiago Leão
Educational project exploring quantum computing threats to RSA encryption, Shor's Algorithm, and post-quantum cryptography solutions (NIST FIPS 203/204/205). Built with Python and Qiskit.
⚛️ 👨🏫 📚 A two-week intensive Summer School on Quantum Computing from IBM Quantum, using mostly the features of the IBM's Qiskit library. In this Summer School, were lectured topics on basics of Quantum Information, Quantum Entanglement, Quantum Algorithms, Quantum Error Mitigation, among many others.
The Sage implementation of a simulator for Regev's factoring algorithm, and of Ekerå–Gärtner's extensions to discrete logarithm finding, order finding and factoring via order finding.
The Quaspy library for Python for simulating and post-processing various quantum algorithms, including Shor's algorithms and Ekerå–Håstad's variations of Shor's algorithms.
The code demonstrates how a third party can break the RSA by obtaining the secret key by using public key and interrupt the communication and modifies the messages in transit.
The source code of MPI programs for simulating quantum algorithms and for post-processing the output from these algorithms. The focus is on Shor's groundbreaking algorithms, and on various derivatives of Shor's algorithms.