
List of Publications
(For an updated list of my publications, please visit ADS. Harvard and Scholar. Google links.)
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Ghassem Gozaliasl, Alexis Finoguenov, et al. Kinematic unrest of low mass galaxy groups, A&A, 635A, 36G, 2020
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Ghassem Gozaliasl, Alexis Finoguenov, et al. Chandra centers for COSMOS X-ray galaxy groups: Differences in stellar properties between central dominant and offset brightest group galaxies. Monthly Notices of the Royal Astronomical Society, MNRAS, 483,3545G, 2019
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Ghassem Gozaliasl, Alexis Finoguenov, Habib G Khosroshahi et al., The Brightest group galaxies ii: the relative contribution of BGGs to the total baryon content of groups at z< 1.3. Monthly Notices of the Royal Astronomical Society, 475(2):2787-2808, 2018.
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Ghassem Gozaliasl, Alexis Finoguenov, Habib G Khosroshahi, Mohammad Mirkazemi, Ghazaleh Erfanianfar, and Masayuki Tanaka. Brightest group galaxies: stellar mass and star formation rate (paper I). Monthly Notices of the Royal Astronomical Society, 458(3):2762–2775, 2016.
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G Gozaliasl, A Finoguenov, HG Khosroshahi, M Mirkazemi, M Salvato, DMZ Jassur, G Erfanianfar, P Popesso, M Tanaka, M Leicester, et al. Mining the gap: evolution of the magnitude gap in x-ray galaxy groups from the 3-square-degree xmm coverage of CFHTLS. Astronomy & Astrophysics, 566: A140, 2014.
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G Gozaliasl, A Finoguenov, HG Khosroshahi, M Mirkazemi, M Salvato, DMZ Jassur, G Erfanianfar, P Popesso, M Tanaka, M Lerchster, et al. Vizier online data catalog: Catalog of xmm x-ray galaxy group (gozaliasl+,2014). VizieR Online Data Catalog, 356, 2014.
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G Gozaliasl, HG Khosroshahi, AA Dariush, A Finoguenov, DMZ Jassur, and A Molaeinezhad. Evolution of the galaxy luminosity function in progenitors of fossil groups. Astronomy & Astrophysics, 571: A49, 2014.
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Ghassem Gozaliasl, Formation of bright central galaxies in massive haloes. 2016, Ph.D. thesis, University of Helsinki.
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Vardoulaki E., Gozaliasl G., Novak M., Finoguenov A., Khosroshahi H.~G., 2022, arXiv, arXiv:2204.02082
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Vardoulaki, E., Gozaliasl, G., Finoguenov, A., Jiménez-Andrade, E. F., and the COSMOS Team, “The M*-Mhalo relation at 0.08 < z < 1.53 in COSMOS: the role of AGN radio-mode feedback”, arXiv e-prints, 2021.
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Vardoulaki, E., Gozaliasl, G., Finoguenov, A., Jiménez-Andrade, E. F., and COSMOS Team, “The M*-Mhalo Relation at 0.08 < z < 1.53 in COSMOS: The Role of Active Galactic Nucleus Radio-mode Feedback”, Research Notes of the American Astronomical Society, vol. 5, no. 4, 2021. doi:10.3847/2515-5172/abf4e5.
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Mahdiyar Mousavi-Sadr, Ghassem Gozaliasl, and Davood M.Z. Jassur, Exoplanets Prediction in Multiplanetary Systems, submitted to PASA.
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Muosavi-Sadr, Jassure, Gozaliasl, 2023,arXiv230107143M, “Revisiting mass-radius relationships for exoplanet populations: a machine learning insight.”
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Darragh-Ford, E., Laigle, C., Gozaliasl, G., et al. Group connectivity in COSMOS: a tracer of mass assembly history, Monthly Notices of the Royal Astronomical Society, MNRAS, 489, 5695D, 2019
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Habib G Khosroshahi, Ghassem Gozaliasl, et al. Optically selected fossil groups; x-ray observations and galaxy properties. Monthly Notices of the Royal Astronomical Society, 443(1):318-327, 2014.
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Khosroshahi, H. G., Gozaliasl, G., Finoguenov, A., Raouf, M., and Miraghee, H., “Probing Galaxy Formation Models in Cosmological Simulations with Observations of Galaxy Groups,” Publication of Korean Astronomical Society, vol. 30, no. 2. pp. 349–353, 2015. DOI: 10.5303/PKAS.2015.30.2.349.
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D Manzoori and G Gozaliasl. A period study of the eclipsing binary U saggetie, The Astronomical Journal, 133(4):1302, 2007
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DMZ Jassur, MH Kermani, and G Gozaliasl. Orbital period changes and long-term luminosity variation in active binary CG Cyg. In Close Binaries in the 21st Century: New Opportunities and Challenges, pages 155-158, Springer, Dordrecht, 2006
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Euclid Collaboration, Schirmer M., Jahnke K., Seidel G., Aussel H., Bodendorf C., Grupp F., et al., 2022, arXiv, arXiv:2203.01650
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Euclid Collaboration, “Euclid preparation. XXXI. Performance assessment of the NISP Red-Grism through spectroscopic simulations for the Wide and Deep surveys” 2023. doi:10.48550/arXiv.2302.09372.
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Euclid Collaboration, “Euclid preparation: XXVIII. Modeling of the weak lensing angular power spectrum” , 2023. doi:10.48550/arXiv.2302.04507.
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Euclid Collaboration, “Euclid preparation. XXX. Evaluating the weak lensing cluster mass biases using the Three Hundred Project hydrodynamical simulations”, 2023. doi:10.48550/arXiv.2302.00687.
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Euclid Collaboration, “Euclid Preparation XXIX: Forecasts for ten different higher-order weak lensing statistics,” 2023. doi:10.48550/arXiv.2301.12890.
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Bisigello, L., “Euclid preparation: XXIII. Derivation of galaxy physical properties with deep machine learning using mock fluxes and H-band images,” <i>Monthly Notices of the Royal Astronomical Society</i>, 2023. doi:10.1093/mnras/stac3810.
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Euclid Collaboration, Fumagalli, A., Saro, A., et al. 2022, arXiv:2211.12965.
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Casey, C.~M., Kartaltepe, J.~S., Drakos, N.~E., et al. 2022, arXiv:2211.07865.
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van Mierlo, S.~E., Caputi, K.~I., Ashby, M., et al.\ 2022, \aap, 666, A200. doi:10.1051/0004-6361/202243950.
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Euclid Collaboration, Bisigello, L., Conselice, C.~J., et al., 2022, arXiv:2206.14944
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Saglia, R., De Nicola, S., Fabricius, M., et al., 2022, arXiv:2206.01620
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Euclid Collaboration, Scaramella, R., Amiaux, J., et al., 2022, AAP, 662, A112. doi:10.1051, 0004-6361, 202141938
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Euclid Collaboration, Lepori, F., Tutusaus, I., et al., 2022, AAP, 662, A93. doi:10.1051, 0004-6361, 202142419
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Euclid Collaboration, Schirmer, M., Jahnke, K., et al.\ 2022, \aap, 662, A92. doi:10.1051/0004-6361/202142897
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Euclid Collaboration, van Mierlo, S.~E., Caputi, K.~I., et al.\ 2022, arXiv:2205.02871.
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Euclid Collaboration, Moneti A., McCracken H.~J., Shuntov M., Kauffmann O.~B., Capak P., Davidzon I., et al., 2022, A\&A, 658, A126.
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doi:10.1051/0004-6361/202142361 Euclid Collaboration, Borlaff A.~S., G{\'o}mez-Alvarez P., Altieri B., Marcum P.~M., Vavrek R., Laureijs R., et al., 2022, A\&A, 657, A92. doi:10.1051/0004-6361/202141935
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Euclid Collaboration, Ili{\'c} S., Aghanim N., Baccigalupi C., Bermejo-Climent J.~R., Fabbian G., Legrand L., et al., 2022, A\&A, 657, A91. doi:10.1051/0004-6361/202141556
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Euclid Collaboration, Bretonni{\`e}re H., Huertas-Company M., Boucaud A., Lanusse F., Jullo E., Merlin E., et al., 2022, A\&A, 657, A90. doi:10.1051/0004-6361/202141393
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Vardoulaki, E., Vazza, F., Jiménez-Andrade, E. F., Gozaliasl, G., Finoguenov, A., and Wittor, D., “Bent It Like FRs: Extended Radio AGN in the COSMOS Field and Their Large-Scale Environment”, <i>Galaxies</i>, vol. 9, no. 4, p. 93, 2021. doi:10.3390/galaxies9040093.
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Euclid Collaboration, “Euclid preparation. XII. Optimizing the photometric sample of the Euclid survey for galaxy clustering and galaxy-galaxy lensing analyses”, <i>Astronomy and Astrophysics</i>, vol. 655, 2021. doi:10.1051/0004-6361/202141061.
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Stanford, S. A., “VizieR Online Data Catalog: Euclid preparation. XIV. C3R2 survey DR3 (Stanford+, 2021)”, <i>VizieR Online Data Catalog</i>, 2021.
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Lepori, F., “Euclid preparation: XIX. Impact of magnification on photometric galaxy clustering”, <i>arXiv e-prints</i>, 2021.
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Saremi, E., “VizieR Online Data Catalog: INT monitoring of Local Group. I. Andromeda I (Saremi+, 2020)”, <i>VizieR Online Data Catalog</i>, 2021.
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Stanford, S. A., “Euclid Preparation. XIV. The Complete Calibration of the Color-Redshift Relation (C3R2) Survey: Data Release 3”, <i>The Astrophysical Journal Supplement Series</i>, vol. 256, no. 1, 2021. doi:10.3847/1538-4365/ac0833.
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Scaramella, R., “Euclid preparation: I. The Euclid Wide Survey”, <i>arXiv e-prints</i>, 2021.
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Euclid Collaboration, “Euclid preparation: IX. EuclidEmulator2 - power spectrum emulation with massive neutrinos and self-consistent dark energy perturbations”, <i>Monthly Notices of the Royal Astronomical Society</i>, vol. 505, no. 2, pp. 2840–2869, 2021. doi:10.1093/mnras/stab1366.
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Pasini, T., Finoguenov, A., Brüggen, M., Gaspari, M., de Gasperin, F., and Gozaliasl, G., “Radio galaxies in galaxy groups: kinematics, scaling relations, and AGN feedback”, <i>Monthly Notices of the Royal Astronomical Society</i>, vol. 505, no. 2, pp. 2628–2637, 2021. doi:10.1093/mnras/stab1451.
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Vardoulaki, E., “VizieR Online Data Catalog: FR-type radio sources at 3GHz VLA-COSMOS (Vardoulaki+, 2021)”, <i>VizieR Online Data Catalog</i>, 2021.
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Vardoulaki, E., “FR-type radio sources at 3 GHz VLA-COSMOS: Relation to physical properties and large-scale environment”, <i>Astronomy and Astrophysics</i>, vol. 648, 2021. doi:10.1051/0004-6361/202039488.
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K. Kiiveri et al. CODEX Weak Lensing Mass Catalogue and implications on the mass-richness relation submitted to MNRAS.
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M. Navabi et al., The Isaac Newton Telescope Monitoring survey of local group dwarf galaxies III: The Andromeda VII star-formation history derived from long-period variable stars, submitted to ApJ.
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Euclid Collaboration, “Euclid preparation: X. The Euclid photometric-redshift challenge,” arXiv e-prints, 2020.
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Vardoulaki, E., “FR-type radio sources at 3 GHz VLA-COSMOS: Relation to physical properties and large-scale environment”, arXiv e-prints, 2020.
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Guglielmo, V., “Euclid preparation: VIII. The Complete Calibration of the Colour-Redshift Relation survey: VLT/KMOS observations and data release,” arXiv e-prints, 2020.
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Comparat, J., “Full-sky photon simulation of clusters and active galactic nuclei in the soft X-rays for eROSITA”, arXiv e-prints, 2020.
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M Roberts, et al., “Machine learning for COVID-19 detection and prognostication using chest radiographs and CT scans: a systematic methodological review”, arXiv preprint arXiv:2008.06388
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Pasini, T. et al. The relation between the diffuse X-ray luminosity and the radio power of the central AGN in galaxy groups,2020arXiv200704999P
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Guglielmo, V, et al. Euclid preparation: VIII. The Complete Calibration of the Colour-Redshift Relation survey: VLT/KMOS observations and data release,2020arXiv200702631G
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Leslie, Sarah et al., The VLA-COSMOS 3 GHz Large Project: Evolution of specific star formation rates out to z∼5,2020arXiv200613937L
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Saremi, Elham et al. The Isaac Newton Telescope Monitoring Survey of Local Group Dwarf Galaxies. I. Survey Overview and First Results for Andromeda I, ApJ, 894, 135S, 2020
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Ahoranta Hot WHIM counterparts of FUV O VI absorbers: Evidence in the line-of-sight towards quasar 3C 273, A&A, 634A,106A, 2020
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Erfanianfar et al. Stellar mass-halo mass relation for the brightest central galaxies of X-ray clusters since z ̃ 0.6, A & A,631A,175E, 2019
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Laigle, C., Davidzon, I., Ilbert, O., et al. Horizon-AGN virtual observatory - 1. SED-fitting performance and forecasts for future imaging surveys, mnras, 486, 5104, 2019
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Vardoulaki, E., Jimenez Andrade, E.~F., Karim, A., et al. A closer look at the deep radio sky: Multi-component radio sources at 3-GHz VLA-COSMOS, arXiv e-prints, arXiv:1901.10168, 2019
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Massimo Brescia, Stefano Cavuoti, Terje Fredvik, Stein Vidar Hagfors Haugan, Ghassem Gozaliasl, Charles Kirkpatrick, Hannu Kurki-Suonio, Giuseppe Longo, Kari Nilsson, and Martin Wiesmann. The design strategy of scienti_c data quality control software for the Euclid mission. In ADASS 2016. Astronomical Society of the Paci_c (ASP) Conference Series(2016arXiv161108467B), 2016.
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Retal Gobat, E Daddi, M B_ethermin, M Pannella, A Finoguenov, G Gozaliasl, E Le Floc'h, C Schreiber, V Strazzullo, M Sargent, et al. Satellite content and quenching of star formation in galaxy groups at z~ 1.8. Astronomy & Astrophysics, 581: A56, 2015.
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A Samadi, DMZ Jassur, S Nassiri, G Gozaliasl, MH Kermani, and A Zareie. Orbital period changes and photometric study of contact binary system AK Her. New Astronomy, 15(4):339-342, 2010.
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Jassur D. M. Z. Kermani M.H. Gozaliasl. Close binaries in the 21st century: New opportunities and challenges,2006, Springer.