Multi-Secant Lemma
Abstract
We present a new generalization of the classical trisecant lemma. Our approach is quite different from previous generalizations. Let be an equidimensional projective variety of dimension . For a given , we are interested in the study of the variety of -secants. The classical trisecant lemma just considers the case where while elsewhere the case is considered. Secants of order from to provide service for our main result. In this paper, we prove that if the variety of -secants () satisfies the three following conditions: (i) trough every point in , passes at least one -secant, (ii) the variety of -secant satisfies a strong connectivity property that we defined in the sequel, (iii) every -secant is also a ()-secant, then the variety can be embedded into . The new assumption, introduced here, that we called strong connectivity is essential because a naive generalization that does not incorporate this assumption fails as we show in some example. The paper concludes with some conjectures concerning the essence of the strong connectivity assumption.
Cite
@article{arxiv.2001.03789,
title = {Multi-Secant Lemma},
author = {Yirmeyahu J. Kaminski and Alexei Kanel-Belov and Mina Teicher},
journal= {arXiv preprint arXiv:2001.03789},
year = {2020}
}
Comments
arXiv admin note: text overlap with arXiv:0712.3878