Detecting and analysing the topology of the cosmic web with spatial clustering algorithms I: methods

Author:

Kelesis Dimitrios12,Basilakos Spyros345,Papadopoulou Lesta Vicky5,Fotakis Dimitris1,Efstathiou Andreas5ORCID

Affiliation:

1. School of Electrical and Computer Engineering, National Technical University of Athens , Athens 15780, Greece

2. National Center for Scientific Research ‘Demokritos’ , 15310 Athens, Greece

3. National Observatory of Athens , Lofos Nymfon, 11852 Athens, Greece

4. Academy of Athens, Research Center for Astronomy and Applied Mathematics , Soranou Efesiou 4, 11527 Athens, Greece

5. School of Sciences, European University Cyprus , Diogenes Street, Engomi, 1516 Nicosia, Cyprus

Abstract

ABSTRACT In this paper, we explore the use of spatial clustering algorithms as a new computational approach for modelling the cosmic web. We demonstrate that such algorithms are efficient in terms of computing time needed. We explore three distinct spatial methods which we suitably adjust for (i) detecting the topology of the cosmic web and (ii) categorizing various cosmic structures as voids, walls, clusters, and superclusters based on a variety of topological and physical criteria such as the physical distance between objects, their masses, and local densities. The methods explored are (1) a new spatial method called Gravity Lattice; (2) a modified version of another spatial clustering algorithm, the abacus; and (3) the well known spatial clustering algorithm hdbscan. We utilize hdbscan in order to detect cosmic structures and categorize them using their overdensity. We demonstrate that the abacus method can be combined with the classic dtfe method to obtain similar results in terms of the achieved accuracy with about an order of magnitude less computation time. To further solidify our claims, we draw insights from the computer science domain and compare the quality of the results with and without the application of our method. Finally, we further extend our experiments and verify their effectiveness by showing their ability to scale well with different cosmic web structures that formed at different redshifts.

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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