Properties

Degree 2
Conductor $ 3^{2} \cdot 5^{2} \cdot 7^{2} $
Sign $1$
Motivic weight 0
Primitive yes
Self-dual yes

Related objects

Learn more about

Normalization:  

(not yet available)

Dirichlet series

$L(s,\rho)$  = 1  − 4-s + 16-s + 2·41-s − 2·59-s − 64-s + 2·79-s + 2·89-s + 2·101-s + 2·109-s − 121-s − 2·131-s + 2·151-s − 2·164-s − 169-s − 2·211-s + 2·236-s + 2·251-s + 256-s + 2·269-s − 289-s − 2·311-s − 2·316-s − 2·331-s − 2·356-s − 361-s − 2·379-s − 2·404-s + ⋯

Functional equation

\[\begin{aligned}\Lambda(s)=\mathstrut & 11025 ^{s/2} \, \Gamma_{\R}(s)^{2} \, L(s,\rho)\cr =\mathstrut & \, \Lambda(1-s) \end{aligned}\]

Invariants

\( d \)  =  \(2\)
\( N \)  =  \(11025\)    =    \(3^{2} \cdot 5^{2} \cdot 7^{2}\)
\( \varepsilon \)  =  $1$
primitive  :  yes
self-dual  :  yes
Selberg data  =  \((2,\ 11025,\ (0, 0:\ ),\ 1)\)

Euler product

\[\begin{aligned}L(s,\rho) = \prod_p \ \prod_{j=1}^{2} (1 - \alpha_{j,p}\, p^{-s})^{-1}\end{aligned}\]

Particular Values

\[L(1/2,\rho) \approx 0.7428670119\] \[L(1,\rho) \approx 0.8416259490\]

Imaginary part of the first few zeros on the critical line

Graph of the $Z$-function along the critical line