My research interests including dark matter distribution in our Milky Way and nearby Universe, Milky Way substructures and evolution, low-mass galaxies to probe different dark matter models, galaxy groups and clusters, galaxy-halo connection, deep photometric galaxy imaging processing, binary stars and stellar parameters.
My list of main publications:
Li, S.,Wang, W., Koposov, S., et al., SpecDis: Value Added Distance Catalog for 4 Million Stars from DESI Year-1 Data,2025, ApJ
Yang, H., Wang,W., Zhu, L., et al., The dark matter content of Milky Way dwarf spheroidal galaxies: Draco, Sextans and Ursa Minor, 2025, ApJ
Wang, W., Yang, X., Jing, Y., et al., Luminosity and Stellar Mass Functions of Faint Photometric Satellites around Spectroscopic Central Galaxies from DESI Year-1 Bright Galaxy Survey, 2025, ApJ
He, J., Wang, W., Li, Z., et al., How do the velocity anisotropies of halo stars, dark matter and satellite galaxies depend on host halo properties, 2024, ApJ
Shi,R., Wang, W., Li, Z., et al., Inferring the mass content of galaxy clusters with satellite kinematics and Jeans anisotropic modeling, 2024, ApJ
Tan, Z.,Wang,W.,Han,J., et al., The mass and redshift dependence of halo star clustering, 2024, ApJ
Zhang, Y., Wang, W., Han, J., et al., Using two point correlation functions to understand the assembly histories of Milky Way-like galaxies, 2024, ApJ
Wang, W., Zhu, L., Jing, Y.P., et al., 2023, Unraveling the Complexity of Dwarf Galaxy Dynamics: A Study of Binary Orbital Motions, ApJ, 956, 91
Alonso, P., Wang, W., Zhang, J., et al., 2023, Dark against Luminous Matter around Isolated Central Galaxies: A Comparative Study between Modern Surveys and IllustrisTNG, ApJ, 947, 19
Wang, W., Zhu, L., Li, Z., et al., 2022, Is the Core-cusp Problem a Matter of Perspective? Jeans Anisotropic Modeling against Numerical Simulations, ApJ, 941, 108
Shi, R., Wang, W., Li, Z., et al., 2022, A machine learning approach to infer the accreted stellar mass fractions of central galaxies in the TNG100 simulation, MNRAS, 515, 3938
Wang, W., Li, X., Shi, J., et al., 2021, The stellar mass in and around isolated central galaxies: connections to the total mass distribution through galaxy-galaxy lensing in the Hyper Suprime-Cam survey, ApJ, 919, 25
Qiu, T., Wang, W., Takada, M., et al., 2021, Proper motion measurements for stars up to 100 kpc with Subaru HSC and SDSS Stripe 82, MNRAS, 501, 5149
Wang, W., Takada, M., Li, X., et al., 2021, A comparative study of satellite galaxies in Milky Way-like galaxies from HSC, DECaLS and SDSS, MNRAS, 500, 3776
Wang, W., Han, J.,Cautun, M., et al., 2020, The mass of our Milky Way, invited review by SCPMA
Wang, W., Han, J., Sonnenfeld, A., et al., 2019, The stellar halo of isolated central galaxies in the Hyper Suprime-Cam imaging survey, MNRAS, 487, 1580
Wang, W., Han, J., Cole, S., et al., 2018, What to expect from dynamical modelling of galactic haloes - II. The spherical Jeans equation,MNRAS, 476, 5669
Wang, W., Han, J., Cole, S., et al., 2017, What to expect from dynamical modelling of galactic haloes, MNRAS, 470, 2351
Wang, W., White, S., Mandelbaum, R., et al., 2016, A weak gravitational lensing recalibration of the scaling relations linking the gas properties of dark haloes to their mass, MNRAS, 456, 2301
Wang, W., Han, J., Cooper, A.Pl., et al., 2015, Estimating the dark matter halo mass of our Milky Way using dynamical tracers, MNRAS, 453, 377
Lowing, B., Wang, W., Cooper, A.P., et al., 2015, Creating mock catalogues of stellar haloes from cosmological simulations, MNRAS, 446, 2274
Cautun, M., Wang, W., Frenk, C.S., et al., 2015, A new spin on discs of satellite galaxies, MNRAS, 449, 2576
Wang, W., Sales, L.V., Henriques, B., 2014, Satellite abundances around bright isolated galaxies - II. Radial distribution and environmental effects, MNRAS, 442, 1363
Wang, W., White, S., 2012, Satellite abundances around bright isolated galaxies, MNRAS, 424, 2574
Wang, W., Jing, Y.P., Li, C., et al., 2011, Galaxy Clustering and Projected Density Profiles as Traced by Satellites in Photometric Surveys: Methodology and Luminosity Dependence, ApJ, 734, 88
galaxy formation and evolution
Milky Way Science
dark matter, streams and substructures, binary stars
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