# Periodic accretion from a circumbinary disk in the young binary UZ Tau E

**Authors:** Eric L. N. Jensen (1), Saurav Dhital (1,2), Keivan G. Stassun (2),, Jenny Patience (3), William Herbst (4), Frederick M. Walter (5), Michal Simon, (5), Gibor Basri (6); (1 - Swarthmore College; 2 - Vanderbilt; 3 - Caltech; 4, - Wesleyan University; 5 - SUNY Stony Brook; 6 - UC Berkeley)

arXiv: 0704.0307 · 2009-06-23

## TL;DR

This study provides observational evidence that binary star systems like UZ Tau E experience periodic accretion from their circumbinary disks, confirmed through photometric variability matching the binary period.

## Contribution

First detection of periodic accretion in a young binary star system, supporting models of material flow across circumbinary gaps.

## Key findings

- Photometric variability matches binary orbital period.
- Brightness shows broad peaks indicating periodic accretion.
- Results align with simulation predictions for similar binary systems.

## Abstract

Close pre-main-sequence binary stars are expected to clear central holes in their protoplanetary disks, but the extent to which material can flow from the circumbinary disk across the gap onto the individual circumstellar disks has been unclear. In binaries with eccentric orbits, periodic perturbation of the outer disk is predicted to induce mass flow across the gap, resulting in accretion that varies with the binary period. This accretion may manifest itself observationally as periodic changes in luminosity. Here we present a search for such periodic accretion in the pre-main-sequence spectroscopic binary UZ Tau E. We present BVRI photometry spanning three years; we find that the brightness of UZ Tau E is clearly periodic, with a best-fit period of 19.16 +/- 0.04 days. This is consistent with the spectroscopic binary period of 19.13 days, refined here from analysis of new and existing radial velocity data. The brightness of UZ Tau E shows significant random variability, but the overall periodic pattern is a broad peak in enhanced brightness, spanning more than half the binary orbital period. The variability of the H-alpha line is not as clearly periodic, but given the sparseness of the data, some periodic component is not ruled out. The photometric variations are in good agreement with predictions from simulations of binaries with orbital parameters similar to those of UZ Tau E, suggesting that periodic accretion does occur from circumbinary disks, replenishing the inner disks and possibly extending the timescale over which they might form planets.

## Full text

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## Figures

11 figures with captions in the complete paper: https://tomesphere.com/paper/0704.0307/full.md

## References

86 references — full list in the complete paper: https://tomesphere.com/paper/0704.0307/full.md

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Source: https://tomesphere.com/paper/0704.0307