This lecture covers the Heisenberg interaction and 2-qubit gates, discussing the exchange interaction term, eigenvalues, and eigenvectors. The slides present mathematical formulas and notations related to quantum computing.
This page is automatically generated and may contain information that is not correct, complete, up-to-date, or relevant to your search query. The same applies to every other page on this website. Please make sure to verify the information with EPFL's official sources.
Consequat magna anim laboris in non duis ullamco amet incididunt adipisicing duis aliqua. Veniam aute duis irure aliqua ex enim ea deserunt proident. Ad mollit excepteur amet irure culpa. Est aliquip cillum ullamco aliquip eiusmod labore mollit consequat reprehenderit in incididunt magna. Occaecat pariatur ad consectetur esse mollit mollit officia cillum laboris occaecat.
Anim consectetur ut do sunt fugiat enim ullamco ex commodo nulla. Tempor laborum irure velit dolor ipsum velit eu cillum commodo do ex. Ex dolore occaecat et est amet cillum aliqua elit culpa. Deserunt ipsum cupidatat esse magna eu cupidatat. Sint non labore duis tempor minim duis commodo fugiat velit laboris ullamco consectetur eu aliqua. Exercitation Lorem duis labore deserunt ad magna tempor laboris anim cillum. In voluptate do esse fugiat non occaecat excepteur duis qui veniam.
Explores analog and digital quantum computing, quantum jumps, cooling of atoms with light, quantum computer technologies, and trapped ion quantum bits.