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Frequency-bin entanglement from domain-engineered down-conversion
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Frequency encoding is quickly becoming an attractive prospect for quantum information protocols owing to larger Hilbert spaces and increased resilience to noise compared to other photonic degrees of freedom. To fully make use of frequency encoding as a practical paradigm for QIP, an efficient and simple source of frequency entanglement is required. Here we present a single-pass source of discrete frequency-bin entanglement which does not use filtering or a resonant cavity. We use a domain-engineered nonlinear crystal to generate an eight-mode frequency-bin entangled source at telecommunication wavelengths. Our approach leverages the high heralding efficient and simplicity associated with bulk crystal sources.
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Observing High-dimensional Bell Inequality Violations using Multi-Outcome Spectral Measurements
Measuring only the joint spectral intensity of a time-bin entangled two-photon state suffices to violate the CGLMP Bell inequality up to dimension 8 using genuinely multi-outcome measurements.
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