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Tight (Lower) Bounds for the Fixed Budget Best Arm Identification Bandit Problem., and . COLT, volume 49 of JMLR Workshop and Conference Proceedings, page 590-604. JMLR.org, (2016)Evidence for cascaded third harmonic generation in non-centrosymmetric gold nanoantennas, , , , , , , , , and 3 other author(s). Nano Lett., 19 (10): 7013-7020 (Oct 9, 2019)<a href="https://arxiv.org/abs/1803.03617" style="font-style: normal;">&raquo; arXiv:1803.03617 (2018)</a>.Modelling And Optimization Of The Second-Harmonic Radiation Pattern In Dielectric Nanoantennas., , , , , and . ECMS, page 453-459. European Council for Modeling and Simulation, (2016)Adaptivity to Smoothness in X-armed bandits., and . COLT, volume 75 of Proceedings of Machine Learning Research, page 1463-1492. PMLR, (2018)Active multiple matrix completion with adaptive confidence sets., , and . AISTATS, volume 89 of Proceedings of Machine Learning Research, page 1783-1791. PMLR, (2019)An Adaptive Strategy for Active Learning with Smooth Decision Boundary., , and . ALT, volume 83 of Proceedings of Machine Learning Research, page 547-571. PMLR, (2018)Rotting bandits are no harder than stochastic ones., , , , and . CoRR, (2018)Coherent Control of the Nonlinear Emission of Single Plasmonic Nanoantennas by Dual-Beam Pumping, , , , , , , , , and 2 other author(s). Advanced Optical Materials, (August 2022)Controlling field asymmetry in nanoscale gaps for second harmonic generation, , , , , and . (2022)Rotting bandits are no harder than stochastic ones., , , , and . AISTATS, volume 89 of Proceedings of Machine Learning Research, page 2564-2572. PMLR, (2019)