A thin-film lithium niobate quantum pulse gate achieves 96.8% temporal-mode selectivity and a lower-bound normalized conversion efficiency of 1810 W^-1 cm^-2, about 1000 times higher than previous QPGs.
Demonstration of coherent time-frequency schmidt mode selection using dispersion-engineered frequency conversion,
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A high-performance quantum pulse gate in thin-film lithium niobate
A thin-film lithium niobate quantum pulse gate achieves 96.8% temporal-mode selectivity and a lower-bound normalized conversion efficiency of 1810 W^-1 cm^-2, about 1000 times higher than previous QPGs.