Integrated generation of complex optical quantum states and their coherent control
Contributo in Atti di convegno
Data di Pubblicazione:
2017
Abstract:
Complex optical quantum states based on entangled photons are essential for investigations of fundamental physics and are the heart of applications in quantum information science. Recently, integrated photonics has become a leading platform for the compact, cost-efficient, and stable generation and processing of optical quantum states. However, onchip sources are currently limited to basic two-dimensional (qubit) two-photon states, whereas scaling the state complexity requires access to states composed of several (<2) photons and/or exhibiting high photon dimensionality. Here we show that the use of integrated frequency combs (on-chip light sources with a broad spectrum of evenly-spaced frequency modes) based on high-Q nonlinear microring resonators can provide solutions for such scalable complex quantum state sources. In particular, by using spontaneous four-wave mixing within the resonators, we demonstrate the generation of bi- and multi-photon entangled qubit states over a broad comb of channels spanning the S, C, and L telecommunications bands, and control these states coherently to perform quantum interference measurements and state tomography. Furthermore, we demonstrate the on-chip generation of entangled high-dimensional (quDit) states, where the photons are created in a coherent superposition of multiple pure frequency modes. Specifically, we confirm the realization of a quantum system with at least one hundred dimensions. Moreover, using off-the-shelf telecommunications components, we introduce a platform for the coherent manipulation and control of frequencyentangled quDit states. Our results suggest that microcavity-based entangled photon state generation and the coherent control of states using accessible telecommunications infrastructure introduce a powerful and scalable platform for quantum information science.
Tipologia CRIS:
Relazione (in Volume)
Keywords:
Frequency combs; Integrated photonics; Nonlinear processes; Quantum optics; spontaneous four-wave mixing
Elenco autori:
Roztocki, P.; Kues, M.; Reimer, C.; Romero Cortes, L.; Sciara, S.; Wetzel, B.; Zhang, Y.; Cino, A.; Chu, S. T.; Little, B. E.; Moss, D. J.; Caspani, L.; Azana, J.; Morandotti, R.
Link alla scheda completa:
Titolo del libro:
Proceedings of SPIE - The International Society for Optical Engineering