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Title: | A note on totally-omnitonal graphs |
Authors: | Caro, Yair Lauri, Josef Zarb, Christina |
Keywords: | Combinatorial analysis Mathematics Graph theory |
Issue Date: | 2019 |
Citation: | Caro, Y., Lauri, J., & Zarb, C. (2019). A note on totally-omnitonal graphs. arXiv preprint arXiv:1911.02800. https://doi.org/10.48550/arXiv.1911.02800. |
Abstract: | Let the edges of the complete graph Kn be coloured red or blue, and let G be a graph with |V (G)| < n. Then ot(n, G) is defined to be the minimum integer, if it exists, such that any such colouring of Kn contains a copy of G with r red edges and b blue edges for any r, b ≥ 0 with r + b = e(G). If ot(n, G) exists for every sufficiently large n, we say that G is omnitonal. Omnitonal graphs were introduced by Caro, Hansberg and Montejano [arXiv:1810.12375,2019]. Now let G1, G2 be two copies of G with their edges coloured red or blue. If there is a colour-preserving isomorphism from G1 to G2 we say that the 2-colourings of G are equivalent. Now we define tot(n, G) to be the minimum integer, if it exists, such that any such colouring of Kn contains all non-quivalent colourings of G with r red edges and b blue edges for any r, b ≥ 0 with r + b = e(G). If tot(n, G) exists for every sufficiently large n, we say that G is totally-omnitotal. In this note we show that the only totally-omnitonal graphs are stars or star forests namely a forest all of whose components are stars. |
URI: | https://www.um.edu.mt/library/oar/handle/123456789/111501 |
Appears in Collections: | Scholarly Works - FacSciMat |
Files in This Item:
File | Description | Size | Format | |
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A_note_on_totally_omnitonal_graphs_2019.pdf | 91.74 kB | Adobe PDF | View/Open |
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