Deterministically Encoding Quantum Information Using 100-Photon Schrödinger Cat States
Yale University · Institut national de recherche en sciences et technologies du numérique
Abstract
In contrast to a single quantum bit, an oscillator can store multiple excitations and coherences provided one has the ability to generate and manipulate complex multiphoton states. We demonstrate multiphoton control by using a superconducting transmon qubit coupled to a waveguide cavity resonator with a highly ideal off-resonant coupling. This dispersive interaction is much greater than decoherence rates and higher-order nonlinearities to allow simultaneous manipulation of hundreds of photons. With a tool set of conditional qubit-photon logic, we mapped an arbitrary qubit state to a superposition of coherent states, known as a "cat state." We created cat states as large as 111 photons and extended this…
Citation impact
- FWCI
- 56.33
- Percentile
- 100%
- References
- 36
Authors
9Topics & keywords
- Qubit
- Physics
- Photon
- Quantum entanglement
- Quantum information
- Quantum
- Quantum mechanics
- Quantum technology