L-invariants and congruences for Galois representations of dimension 3, 4, and 8

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Abstract

The arithmetic of Galois representations plays a central role in modern number theory. In this thesis we consider representations arising from tensor products of the two-dimensional representations attached to modular forms by Deligne. In particular, we shall study the Iwasawa theory of the adjoint representation, as well as certain double and triple products of Deligne's representations. In the first half we will undertake a computational study of L-invariants attached to symmetric squares of modular forms. Let ฦ’ be a primitive modular form of weight ๐˜ฌ and level ๐˜•, and ๐˜ฑ โˆค ๐˜• a prime greater than two for which the attached representation is ordinary. The ๐˜ฑ-adic ๐˜“-function Symยฒฦ’ always vanishes at s=1, even though the complex ๐˜“-function does not have a zero there. The L-invariant itself appears on the right-hand side of the formula \frac{\text{\rm d}\;}{\text{\rm d}s}\mathbf{L}_p(\text{\rm Sym}^2f,s) \Bigg|_{s=k-1}= \mathcal{L}_p(\text{\rm Sym}^2f) \times (1-\alpha_p^{-2}p^{k-2})(1-\alpha_p^{-2}p^{k-1}) \times \frac{L_{\infty}(\text{\rm Sym}^2f,k-1)}{\pi^{k-1}\langle f,f\rangle_N} where Xยฒ-aโ‚š(ฦ’)๐˜Ÿ + p = (๐˜Ÿ-ฮฑโ‚š)(๐˜Ÿ-ฮฒโ‚š) with ฮฑโ‚š โˆˆ Zหฃโ‚š. Now let ๐˜Œ be an elliptic curve over Q with associated modular form ฦ’แด‡, and ๐˜ฑ โ‰  2 a prime of good ordinary reduction. We devise a method to calculate Lโ‚š(Symยฒฦ’แด‡) effectively, then show it is non-trivial for almost all pairs of elliptic curves ๐˜Œ of conductor ๐˜•แด‡ โ‰ค 300, with 4|๐˜•แด‡, and ordinary primes ๐˜ฑ < 17. Hence, in these cases at least, the order of the zero in Lโ‚š(Symยฒฦ’แด‡, ๐˜ด) at ๐˜ด = 1 is exactly one. We also generalise this method to compute symmetric square L-invariants for modular forms of weight ๐˜ฌ > 2. In the second half we will establish congruences between ๐˜ฑ-adic ๐˜“-functions. In the late 1990s, Vatsal showed that a congruence modulo ๐˜ฑ แต› between two newforms implied a congruence between their respective ๐˜ฑ-adic ๐˜“-functions. We shall prove an analogous statement for both the double product and triple product ๐˜ฑ-adic ๐˜“-functions, Lโ‚š(fโŠ—g) and Lโ‚š (fโŠ—gโŠ—h): the former is cyclotomic in its nature, while the latter is over the weight space. As a corollary, we derive transition formulae relating analytic ฮป-invariants for pairs of congruent Galois representations for ๐˜๐’ป โŠ— ๐˜๐“ฐ, and for ๐˜๐’ป โŠ— ๐˜๐“ฐโŠ— ๐˜โ‚•.

Citation

Gilmore, H. J. (2020). L-invariants and congruences for Galois representations of dimension 3, 4, and 8 (Thesis, Doctor of Philosophy (PhD)). The University of Waikato, Hamilton, New Zealand. Retrieved from https://hdl.handle.net/10289/13898

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The University of Waikato

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