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Mapping reionization bubbles in the JWST era I: empirical edge detection with Lyman alpha emission from galaxies

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arxiv 2411.04176 v1 pith:7PZKKUTR submitted 2024-11-06 astro-ph.GA astro-ph.CO

classification astro-ph.GAastro-ph.CO
keywords alphagalaxiesbubblesbubblemethodsemissionionizedreionization
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Ionized bubble sizes during reionization trace physical properties of the first galaxies. JWST's ability to spectroscopically confirm and measure Lyman-alpha (Ly$\alpha$) emission in sub-L* galaxies opens the door to mapping ionized bubbles in 3D. However, existing Lya-based bubble measurement strategies rely on constraints from single galaxies, which are limited by the large variability in intrinsic Ly$\alpha$ emission. As a first step, we present two bubble size estimation methods using Lya spectroscopy of ensembles of galaxies, enabling us to map ionized structures and marginalize over Ly$\alpha$ emission variability. We test our methods using Gpc-scale reionization simulations of the intergalactic medium (IGM). To map bubbles in the plane of the sky, we develop an edge detection method based on the asymmetry of Ly$\alpha$ transmission as a function of spatial position. To map bubbles along the line-of-sight, we develop an algorithm using the tight relation between Ly$\alpha$ transmission and the line-of-sight distance from galaxies to the nearest neutral IGM patch. Both methods can robustly recover bubbles with radius $\gtrsim$10 comoving Mpc, sufficient for mapping bubbles even in the early phases of reionization, when the IGM is $\sim70-90\%$ neutral. These methods require $\gtrsim$0.002-0.004 galaxies/cMpc$^3$, a $5\sigma$ Ly$\alpha$ equivalent width upper limit of $\lesssim$30\r{A} for the faintest targets, and redshift precision $\Delta z \lesssim 0.015$, feasible with JWST spectroscopy. Shallower observations will provide robust lower limits on bubble sizes. Additional constraints on IGM transmission from Ly$\alpha$ escape fractions and line profiles will further refine these methods, paving the way to our first direct understanding of ionized bubble growth.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. The Impact of Galaxy Overdensities and Ionized Bubbles on Ly$\alpha$ Emission at $z\sim7.0-8.5$

    astro-ph.GA 2025-05 conditional novelty 7.0 of 10

    Strong Lyα emitters at z~7-8.5 are preferentially found in galaxy overdensities comparable in size to predicted ionized bubbles, with the EGS field showing evidence for an unusually large ionized sightline.

  2. Deep JWST spectroscopy of galaxies in a candidate ionized bubble at $z = 8.7$: probing reionization at pMpc scales with Ly$\alpha$ emission

    astro-ph.GA 2025-10 unverdicted novelty 6.0 of 10

    Lyα transmission in the z=8.7 EGS volume is T_IGM=0.26+0.25−0.14, consistent with the field average and mildly inconsistent with a 2-pMpc ionized bubble, making such a bubble unlikely.

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