Channel formation enhances target consumption by chemotactic active brownian particles

Abstract In many situations, simply finding a target during a search is not enough. It is equally important to be able to return to that target repeatedly or to enable a larger community to locate and utilize it. While first passage time is commonly used to measure search success, relatively little is known about measures of repeated target encounters, such as the mean first passage count (MFPC), and their rate over time. Here we compare an active Brownian particle model with central resetting, with and without chemotaxis. Searchers with no individual memory but shared environmental memory encode information about the target's location in the environment, outperforming purely memoryless strategies by boosting the overall hit rate. We further show that this approach leads to a sublinear dependence of encounter rate on target size, reducing the impact of target size on a successful search and increasing the total utilization time of the target.

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Publication Details

Journal
New Journal of Physics
Published
2026-09-15
DOI
https://doi.org/10.1088/1367-2630/aea7cb
Primary Topic
Nanoparticle-Based Drug Delivery
Type
article
Field-Weighted Citation Impact
0.00

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article

Channel formation enhances target consumption by chemotactic active brownian particles

Yael Roichman, Vladimir Yu. Rudyak, Shahar Shinehorn
New Journal of Physics
Nanoparticle-Based Drug Delivery
article

Channel formation enhances target consumption by chemotactic active brownian particles

Yael Roichman, Vladimir Yu. Rudyak, Shahar Shinehorn
article en

Abstract

Abstract In many situations, simply finding a target during a search is not enough. It is equally important to be able to return to that target repeatedly or to enable a larger community to locate and utilize it. While first passage time is commonly used to measure search success, relatively little is known about measures of repeated target encounters, such as the mean first passage count (MFPC), and their rate over time. Here we compare an active Brownian particle model with central resetting, with and without chemotaxis. Searchers with no individual memory but shared environmental memory encode information about the target's location in the environment, outperforming purely memoryless strategies by boosting the overall hit rate. We further show that this approach leads to a sublinear dependence of encounter rate on target size, reducing the impact of target size on a successful search and increasing the total utilization time of the target.

New Journal of Physics
Tel Aviv University (IL)
Ministry of Aliyah and Immigrant Absorption, Israel Science Foundation, Israeli Centers for Research Excellence, H2020 European Research Council
Openalex Percentile: Top 100%
Nanoparticle-Based Drug Delivery
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