The research work performed in this project report period focussed on understanding the properties of voids and superclusters, and their use in testing the current standard cosmological model. This work resulted in the publication of six scientific papers in major international journals. These papers have received a total of 157 citations to date according to the NASA Astronomy Database ADS.
The main results achieved are as follows:
1. Algorithms for identifying voids in galaxy survey data were improved, and a new method specifically designed for application to photometric datasets was developed. These methods were applied to state of the art data from the Sloan Digital Sky Survey (SDSS) and the Dark Energy Survey (DES) to create public catalogues of void and supercluster structures for use in a variety of cosmological tests.
2. The properties of voids were studied using large cosmological simulations. New results were obtained identifying scaling relations between void properties and those of the underlying gravitational potential, and calibration of the matter and potential profiles around void centres, leading to improved predictions for their gravitational effects.
3. New statistical methods for measuring the gravitational imprints of voids through gravitational lensing and the integrated Sachs-Wolfe effect were developed.
4. Application of these methods to data catalogues created from SDSS and DES data resulted in the first detection of the void lensing effect from photometric data, and the highest precision measurement of the integrated Sachs-Wolfe imprint of voids and superclusters in the cosmic microwave background to date.
The list of publications produced is:
P1. P. Bull, Y. Akrami, et al. (including S. Nadathur), “Beyond ΛCDM: problems, solutions and the road ahead”, Phys. Dark Univ. 12, 56 (2016),
P2. S. Nadathur, “Testing cosmology with a catalogue of voids in the BOSS galaxy surveys”, Monthly Notices of the Royal Astronomical Society 461, 358 (2016)
P3. S. Nadathur and R. Crittenden, “A detection of the ISW imprint of cosmic superstructures using a matched-filter approach”, Astrophys. J. Lett. 830, L19 (2016)
P4. C. Sanchez, J. Clampitt, A. Kovács, B. Jain, J. Garcia-Bellido, S. Nadathur et al., “Cosmic Voids and Void Lensing in the Dark Energy Survey Science Verification Data”, Monthly Notices of the Royal Astronomical Society 465, 746 (2017)
P5. A. Kovács, C. Sanchez, J. Garcia-Bellido, S. Nadathur et al., “Imprint of DES superstructures on the Cosmic Microwave Background”, Monthly Notices of the Royal Astronomical Society 465, 4166 (2017)
P6. S. Nadathur, S. Hotchkiss and R. Crittenden, “Tracing the gravitational potential using cosmic voids”, Monthly Notices of the Royal Astronomical Society 467, 4067 (2017)
Results from this project were presented at 4 international meetings or conferences, and at 9 invited academic seminars at different university departments.