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Yafit Maayan

Publications and source records attributed to Yafit Maayan.

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Impact of food distribution on lifetime of a forager with or without sense of smell

Modeling foraging via basic models is a problem that has been recently investigated from several points of view. However, understanding the effect of the spatial distribution of food on the lifetime of a forager has not been achieved yet. We explore here how the distribution of food in space affects the forager's lifetime in several different scenarios. We analyze a random forager and a smelling forager in both one and two dimensions. We first consider a general food distribution, and then analyze in detail specific distributions including constant distance between food, certain probability of existence of food at each site, and power-law distribution of distances between food. For a forager in one dimension without smell we find analytically the lifetime, and for a forager with smell we find the condition for immortality. In two dimensions we find based on analytical considerations that the lifetime ($T$) scales with the starving time ($S$) and food density ($f$) as $T\sim S^4f^{3/2}$.

physics.soc-ph

Lifetime of a greedy forager with long-range smell

We study a greedy forager who consumes food throughout a region. If the forager does not eat any food for $S$ time steps it dies. We assume that the forager moves preferentially in the direction of greatest smell of food. Each food item in a given direction contributes towards the total smell of food in that direction, however the smell of any individual food item decays with its distance from the forager. We assume a power-law decay of the smell with the distance of the food from the forager and vary the exponent $α$ governing this decay. We find, both analytically and through simulations, that for a forager living in one dimension, there is a critical value of $α$, namely $α_c$, where for $α<α_c$ the forager will die in finite time, however for $α>α_c$ the forager has a nonzero probability to live infinite time. We calculate analytically, the critical value, $α_c$, separating these two behaviors and find that $α_c$ depends on $S$ as $α_c=1 + 1/\lceil S/2 \rceil$. We determine analytically that at $α=α_c$ the system has an essential singularity. We also study, using simulations, a forager with long-range decaying smell in two dimensions (2D) and find that for this case the forager always dies within finite time. However, in 2D we observe indications of an optimal $α$ for which the forager has the longest lifetime.

physics.soc-ph