Properties

Label 9610.2.a.u
Level $9610$
Weight $2$
Character orbit 9610.a
Self dual yes
Analytic conductor $76.736$
Analytic rank $0$
Dimension $3$
CM no
Inner twists $1$

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Newspace parameters

comment: Compute space of new eigenforms
 
[N,k,chi] = [9610,2,Mod(1,9610)]
 
mf = mfinit([N,k,chi],0)
 
lf = mfeigenbasis(mf)
 
from sage.modular.dirichlet import DirichletCharacter
 
H = DirichletGroup(9610, base_ring=CyclotomicField(2))
 
chi = DirichletCharacter(H, H._module([0, 0]))
 
N = Newforms(chi, 2, names="a")
 
//Please install CHIMP (https://github.com/edgarcosta/CHIMP) if you want to run this code
 
chi := DirichletCharacter("9610.1");
 
S:= CuspForms(chi, 2);
 
N := Newforms(S);
 
Level: \( N \) \(=\) \( 9610 = 2 \cdot 5 \cdot 31^{2} \)
Weight: \( k \) \(=\) \( 2 \)
Character orbit: \([\chi]\) \(=\) 9610.a (trivial)

Newform invariants

comment: select newform
 
sage: f = N[0] # Warning: the index may be different
 
gp: f = lf[1] \\ Warning: the index may be different
 
Self dual: yes
Analytic conductor: \(76.7362363425\)
Analytic rank: \(0\)
Dimension: \(3\)
Coefficient field: 3.3.148.1
comment: defining polynomial
 
gp: f.mod \\ as an extension of the character field
 
Defining polynomial: \( x^{3} - x^{2} - 3x + 1 \) Copy content Toggle raw display
Coefficient ring: \(\Z[a_1, a_2, a_3]\)
Coefficient ring index: \( 2 \)
Twist minimal: no (minimal twist has level 310)
Fricke sign: \(-1\)
Sato-Tate group: $\mathrm{SU}(2)$

$q$-expansion

comment: q-expansion
 
sage: f.q_expansion() # note that sage often uses an isomorphic number field
 
gp: mfcoefs(f, 20)
 

Coefficients of the \(q\)-expansion are expressed in terms of a basis \(1,\beta_1,\beta_2\) for the coefficient ring described below. We also show the integral \(q\)-expansion of the trace form.

\(f(q)\) \(=\) \( q + q^{2} + (\beta_1 - 1) q^{3} + q^{4} + q^{5} + (\beta_1 - 1) q^{6} + ( - \beta_{2} + \beta_1) q^{7} + q^{8} + (\beta_{2} - \beta_1 + 1) q^{9} + q^{10} + ( - \beta_{2} - 2 \beta_1 + 1) q^{11} + (\beta_1 - 1) q^{12}+ \cdots + (3 \beta_{2} - 2 \beta_1 + 1) q^{99}+O(q^{100}) \) Copy content Toggle raw display
\(\operatorname{Tr}(f)(q)\) \(=\) \( 3 q + 3 q^{2} - 2 q^{3} + 3 q^{4} + 3 q^{5} - 2 q^{6} + 3 q^{8} + 3 q^{9} + 3 q^{10} - 2 q^{12} + 8 q^{13} - 2 q^{15} + 3 q^{16} + 3 q^{18} + 8 q^{19} + 3 q^{20} + 12 q^{21} + 2 q^{23} - 2 q^{24} + 3 q^{25}+ \cdots + 4 q^{99}+O(q^{100}) \) Copy content Toggle raw display

Basis of coefficient ring in terms of a root \(\nu\) of \( x^{3} - x^{2} - 3x + 1 \) : Copy content Toggle raw display

\(\beta_{1}\)\(=\) \( \nu^{2} - 2 \) Copy content Toggle raw display
\(\beta_{2}\)\(=\) \( -\nu^{2} + 2\nu + 2 \) Copy content Toggle raw display
\(\nu\)\(=\) \( ( \beta_{2} + \beta_1 ) / 2 \) Copy content Toggle raw display
\(\nu^{2}\)\(=\) \( \beta _1 + 2 \) Copy content Toggle raw display

Embeddings

For each embedding \(\iota_m\) of the coefficient field, the values \(\iota_m(a_n)\) are shown below.

For more information on an embedded modular form you can click on its label.

comment: embeddings in the coefficient field
 
gp: mfembed(f)
 
Label   \(\iota_m(\nu)\) \( a_{2} \) \( a_{3} \) \( a_{4} \) \( a_{5} \) \( a_{6} \) \( a_{7} \) \( a_{8} \) \( a_{9} \) \( a_{10} \)
1.1
0.311108
−1.48119
2.17009
1.00000 −2.90321 1.00000 1.00000 −2.90321 −4.42864 1.00000 5.42864 1.00000
1.2 1.00000 −0.806063 1.00000 1.00000 −0.806063 3.35026 1.00000 −2.35026 1.00000
1.3 1.00000 1.70928 1.00000 1.00000 1.70928 1.07838 1.00000 −0.0783777 1.00000
\(n\): e.g. 2-40 or 990-1000
Significant digits:
Format:

Atkin-Lehner signs

\( p \) Sign
\(2\) \( -1 \)
\(5\) \( -1 \)
\(31\) \( -1 \)

Inner twists

This newform does not admit any (nontrivial) inner twists.

Twists

       By twisting character orbit
Char Parity Ord Mult Type Twist Min Dim
1.a even 1 1 trivial 9610.2.a.u 3
31.b odd 2 1 310.2.a.e 3
93.c even 2 1 2790.2.a.bi 3
124.d even 2 1 2480.2.a.u 3
155.c odd 2 1 1550.2.a.k 3
155.f even 4 2 1550.2.b.j 6
248.b even 2 1 9920.2.a.bx 3
248.g odd 2 1 9920.2.a.bw 3
    
        By twisted newform orbit
Twist Min Dim Char Parity Ord Mult Type
310.2.a.e 3 31.b odd 2 1
1550.2.a.k 3 155.c odd 2 1
1550.2.b.j 6 155.f even 4 2
2480.2.a.u 3 124.d even 2 1
2790.2.a.bi 3 93.c even 2 1
9610.2.a.u 3 1.a even 1 1 trivial
9920.2.a.bw 3 248.g odd 2 1
9920.2.a.bx 3 248.b even 2 1

Hecke kernels

This newform subspace can be constructed as the intersection of the kernels of the following linear operators acting on \(S_{2}^{\mathrm{new}}(\Gamma_0(9610))\):

\( T_{3}^{3} + 2T_{3}^{2} - 4T_{3} - 4 \) Copy content Toggle raw display
\( T_{7}^{3} - 16T_{7} + 16 \) Copy content Toggle raw display
\( T_{11}^{3} - 28T_{11} + 52 \) Copy content Toggle raw display

Hecke characteristic polynomials

$p$ $F_p(T)$
$2$ \( (T - 1)^{3} \) Copy content Toggle raw display
$3$ \( T^{3} + 2 T^{2} + \cdots - 4 \) Copy content Toggle raw display
$5$ \( (T - 1)^{3} \) Copy content Toggle raw display
$7$ \( T^{3} - 16T + 16 \) Copy content Toggle raw display
$11$ \( T^{3} - 28T + 52 \) Copy content Toggle raw display
$13$ \( T^{3} - 8 T^{2} + \cdots - 4 \) Copy content Toggle raw display
$17$ \( T^{3} - 16T - 16 \) Copy content Toggle raw display
$19$ \( T^{3} - 8 T^{2} + \cdots + 160 \) Copy content Toggle raw display
$23$ \( T^{3} - 2 T^{2} + \cdots + 8 \) Copy content Toggle raw display
$29$ \( T^{3} - 2 T^{2} + \cdots + 260 \) Copy content Toggle raw display
$31$ \( T^{3} \) Copy content Toggle raw display
$37$ \( T^{3} - 8 T^{2} + \cdots + 92 \) Copy content Toggle raw display
$41$ \( T^{3} + 2 T^{2} + \cdots + 232 \) Copy content Toggle raw display
$43$ \( T^{3} - 10 T^{2} + \cdots + 604 \) Copy content Toggle raw display
$47$ \( T^{3} - 20 T^{2} + \cdots + 208 \) Copy content Toggle raw display
$53$ \( T^{3} - 20 T^{2} + \cdots - 4 \) Copy content Toggle raw display
$59$ \( T^{3} - 20 T^{2} + \cdots - 160 \) Copy content Toggle raw display
$61$ \( T^{3} - 18 T^{2} + \cdots - 100 \) Copy content Toggle raw display
$67$ \( T^{3} + 12 T^{2} + \cdots - 1184 \) Copy content Toggle raw display
$71$ \( T^{3} - 8 T^{2} + \cdots + 128 \) Copy content Toggle raw display
$73$ \( T^{3} - 20 T^{2} + \cdots + 464 \) Copy content Toggle raw display
$79$ \( T^{3} - 192T + 160 \) Copy content Toggle raw display
$83$ \( T^{3} + 10 T^{2} + \cdots - 124 \) Copy content Toggle raw display
$89$ \( T^{3} + 18 T^{2} + \cdots - 40 \) Copy content Toggle raw display
$97$ \( T^{3} + 10 T^{2} + \cdots - 8 \) Copy content Toggle raw display
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