Quantum rotations
Daniel Kudrow, Kenneth Bier, Zhaoxia Deng, Diana M. Franklin, Yu Tomita, Kenneth R. Brown, Frederic T. Chong · 2013
Work in quantum computer architecture has focused on communication, layout and fault tolerance, largely driven by Shor's factorization algorithm. For the first time, we study a larger range of benchmarks and find that another critical issue is the generation of code sequences for quantum rotation operations. Specifically, quantum algorithms require arbitrary rotation angles, while quantum technologies and error correction codes provide only for discrete angles and operators. A sequence of quantum machine instructions must be generated to approximate the arbitrary rotation to the required precision.