Stochastic resetting selectively optimizes competitive first-passage outcomes and suppresses conditional FPT fluctuations in non-Markovian CTRW systems via a derived inequality.
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Confinement accelerates wall-normal first-passage times for colloids by increasing the chance of large non-Gaussian displacements.
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Resetting optimized competitive first-passage outcomes in non-Markovian systems
Stochastic resetting selectively optimizes competitive first-passage outcomes and suppresses conditional FPT fluctuations in non-Markovian CTRW systems via a derived inequality.
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First-passage statistics of confined colloids
Confinement accelerates wall-normal first-passage times for colloids by increasing the chance of large non-Gaussian displacements.