The halo of M105 and its group environment as traced by planetary nebula populations: I. Wide-field photometric survey of planetary nebulae in the Leo I group
arXiv:2008.01696 · doi:10.1051/0004-6361/202038009
Abstract
M105 (NGC 3379) is an early-type galaxy in the Leo I group. This group is the nearest group that contains all main galaxy types and can thus be used as a benchmark to study the properties of the intra-group light (IGL) in low-mass groups. We use PNe as discrete stellar tracers of the diffuse light around M105. PNe were identified on the basis of their bright [OIII]5007 AA emission and the absence of a broad-band continuum. We compare the PN number density profile with the galaxy surface-brightness profile decomposed into metallicity components using published HST photometry in two halo fields. We identify 226 PNe candidates within a limiting magnitude of mlim = 28.1 from our Subaru-SuprimeCam imaging, covering 67.6 kpc along the major axis of M105 and the halos of NGC 3384 and NGC 3398. We find an excess of PNe at large radii compared to the stellar surface brightness profile from broad-band surveys. This excess is related to a variation in the luminosity-specific PN number with radius. The -parameter value of the extended halo is more than 7 times higher than that of the inner halo. We also measure an increase in the slope of the PN luminosity function at fainter magnitudes with radius. We infer that the radial variation of the PN population properties is due to a diffuse population of metal-poor stars ([M/H] < -1.0) following an exponential profile, in addition to the M105 halo. The spatial coincidence between the number density profile of these metal-poor stars and the increase in the -parameter value with radius establishes the missing link between metallicity and the post-AGB phases of stellar evolution. We estimate that the total bolometric luminosity associated with the exponential IGL population is 2.04x10^9 Lsun as a lower limit, corresponding to an IGL fraction of 3.8%. This work sets the stage for kinematic studies of the IGL in low-mass groups.
22 pages, 18 figures, accepted for publication in Astronomy & Astrophysics. Abridged abstract
References in corpus (16)
- The NumPy array: a structure for efficient numerical computation
- astroquery: An Astronomical Web-Querying Package in Python
- The SAURON project -- X. The orbital anisotropy of elliptical and lenticular galaxies: revisiting the (V/sigma,epsilon) diagram with integral-field stellar kinematics
- Ly-alpha Emission-Line Galaxies at z = 3.1 in the Extended Chandra Deep Field South
- An Orphan in the "Field of Streams"
- The MASSIVE Survey - I. A Volume-Limited Integral-Field Spectroscopic Study of the Most Massive Early-Type Galaxies within 108 Mpc
- The Burrell Schmidt Deep Virgo Survey: Tidal Debris, Galaxy Halos, and Diffuse Intracluster Light in the Virgo Cluster
- The Formation and Evolution of Intracluster Light
- Planetary nebulae as tracers of galaxy stellar populations
- Dearth of dark matter or massive dark halo? Mass-shape-anisotropy degeneracies revealed by NMAGIC dynamical models of the elliptical galaxy NGC 3379
- The Metallicity Distribution of Intracluster Stars in Virgo
- The Nature and Origin of Substructure in the Outskirts of M31. I. Surveying the Stellar Content with HST/ACS
- The build-up of the cD halo of M87 - evidence for accretion in the last Gyr
- A collisional origin for the Leo ring
- The Planetary Nebula Spectrograph survey of S0 galaxy kinematics. Data and Overview
- A two-mode planetary nebula luminosity function
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- The MUSE view of the Sculptor galaxy: survey overview and the planetary nebulae luminosity function
- Growth of Ex-situ Diffuse Intragroup Light in Simulated Galaxy Groups
- The Fornax 3D project: PNe populations and stellar metallicity in edge-on galaxies
- The Effect of Superpositions on the Planetary Nebula Luminosity Function
- Towards Precision Cosmology With Improved PNLF Distances Using VLT-MUSE. III. Impact of Stellar Populations in Early-Type Galaxy