Show commands: Magma / Pari/GP / SageMath

Newspace parameters

Copy content comment:Compute space of new eigenforms
 
Copy content gp:[N,k,chi] = [4608,2,Mod(1,4608)] mf = mfinit([N,k,chi],0) lf = mfeigenbasis(mf)
 
Copy content magma:// Please install CHIMP (https://github.com/edgarcosta/CHIMP) if you want to run this code chi := DirichletCharacter("4608.1"); S:= CuspForms(chi, 2); N := Newforms(S);
 
Copy content sage:from sage.modular.dirichlet import DirichletCharacter H = DirichletGroup(4608, base_ring=CyclotomicField(2)) chi = DirichletCharacter(H, H._module([0, 0, 0])) N = Newforms(chi, 2, names="a")
 
Level: \( N \) \(=\) \( 4608 = 2^{9} \cdot 3^{2} \)
Weight: \( k \) \(=\) \( 2 \)
Character orbit: \([\chi]\) \(=\) 4608.a (trivial)

Newform invariants

Copy content comment:select newform
 
Copy content sage:traces = [2,0,0,0,4,0,0,0,0,0,-4,0,-4,0,0,0,-4,0,0,0,0,0,-8,0,2] f = next(g for g in N if [g.coefficient(i+1).trace() for i in range(25)] == traces)
 
Copy content gp:f = lf[1] \\ Warning: the index may be different
 
Self dual: yes
Analytic conductor: \(36.7950652514\)
Analytic rank: \(1\)
Dimension: \(2\)
Coefficient field: \(\Q(\zeta_{8})^+\)
Copy content comment:defining polynomial
 
Copy content gp:f.mod \\ as an extension of the character field
 
Defining polynomial: \( x^{2} - 2 \) Copy content Toggle raw display
Coefficient ring: \(\Z[a_1, \ldots, a_{5}]\)
Coefficient ring index: \( 1 \)
Twist minimal: no (minimal twist has level 1536)
Fricke sign: \(+1\)
Sato-Tate group: $\mathrm{SU}(2)$

Embedding invariants

Embedding label 1.1
Root \(-1.41421\) of defining polynomial
Character \(\chi\) \(=\) 4608.1

$q$-expansion

Copy content comment:q-expansion
 
Copy content sage:f.q_expansion() # note that sage often uses an isomorphic number field
 
Copy content gp:mfcoefs(f, 20)
 
\(f(q)\) \(=\) \(q+0.585786 q^{5} +1.41421 q^{7} +0.828427 q^{11} -4.82843 q^{13} +0.828427 q^{17} +2.82843 q^{19} -6.82843 q^{23} -4.65685 q^{25} +4.58579 q^{29} -7.07107 q^{31} +0.828427 q^{35} -0.343146 q^{37} -6.48528 q^{41} -1.17157 q^{43} +4.48528 q^{47} -5.00000 q^{49} +10.2426 q^{53} +0.485281 q^{55} -9.65685 q^{59} -11.6569 q^{61} -2.82843 q^{65} -5.65685 q^{67} -8.48528 q^{71} +11.3137 q^{73} +1.17157 q^{77} -14.5858 q^{79} -3.17157 q^{83} +0.485281 q^{85} +17.3137 q^{89} -6.82843 q^{91} +1.65685 q^{95} +3.65685 q^{97} +O(q^{100})\)
\(\operatorname{Tr}(f)(q)\) \(=\) \( 2 q + 4 q^{5} - 4 q^{11} - 4 q^{13} - 4 q^{17} - 8 q^{23} + 2 q^{25} + 12 q^{29} - 4 q^{35} - 12 q^{37} + 4 q^{41} - 8 q^{43} - 8 q^{47} - 10 q^{49} + 12 q^{53} - 16 q^{55} - 8 q^{59} - 12 q^{61} + 8 q^{77}+ \cdots - 4 q^{97}+O(q^{100}) \) Copy content Toggle raw display

Coefficient data

For each \(n\) we display the coefficients of the \(q\)-expansion \(a_n\), the Satake parameters \(\alpha_p\), and the Satake angles \(\theta_p = \textrm{Arg}(\alpha_p)\). You can download additional coefficients here.



Currently showing only \(a_p\); display all \(a_n\) Currently showing all \(a_n\); display only \(a_p\)
Significant digits:
\(n\) \(a_n\) \(a_n / n^{(k-1)/2}\) \( \alpha_n \) \( \theta_n \)
\(p\) \(a_p\) \(a_p / p^{(k-1)/2}\) \( \alpha_p\) \( \theta_p \)
\(2\) 0 0
\(3\) 0 0
\(4\) 0 0
\(5\) 0.585786 0.261972 0.130986 0.991384i \(-0.458186\pi\)
0.130986 + 0.991384i \(0.458186\pi\)
\(6\) 0 0
\(7\) 1.41421 0.534522 0.267261 0.963624i \(-0.413881\pi\)
0.267261 + 0.963624i \(0.413881\pi\)
\(8\) 0 0
\(9\) 0 0
\(10\) 0 0
\(11\) 0.828427 0.249780 0.124890 0.992171i \(-0.460142\pi\)
0.124890 + 0.992171i \(0.460142\pi\)
\(12\) 0 0
\(13\) −4.82843 −1.33916 −0.669582 0.742738i \(-0.733527\pi\)
−0.669582 + 0.742738i \(0.733527\pi\)
\(14\) 0 0
\(15\) 0 0
\(16\) 0 0
\(17\) 0.828427 0.200923 0.100462 0.994941i \(-0.467968\pi\)
0.100462 + 0.994941i \(0.467968\pi\)
\(18\) 0 0
\(19\) 2.82843 0.648886 0.324443 0.945905i \(-0.394823\pi\)
0.324443 + 0.945905i \(0.394823\pi\)
\(20\) 0 0
\(21\) 0 0
\(22\) 0 0
\(23\) −6.82843 −1.42383 −0.711913 0.702268i \(-0.752171\pi\)
−0.711913 + 0.702268i \(0.752171\pi\)
\(24\) 0 0
\(25\) −4.65685 −0.931371
\(26\) 0 0
\(27\) 0 0
\(28\) 0 0
\(29\) 4.58579 0.851559 0.425780 0.904827i \(-0.360000\pi\)
0.425780 + 0.904827i \(0.360000\pi\)
\(30\) 0 0
\(31\) −7.07107 −1.27000 −0.635001 0.772512i \(-0.719000\pi\)
−0.635001 + 0.772512i \(0.719000\pi\)
\(32\) 0 0
\(33\) 0 0
\(34\) 0 0
\(35\) 0.828427 0.140030
\(36\) 0 0
\(37\) −0.343146 −0.0564128 −0.0282064 0.999602i \(-0.508980\pi\)
−0.0282064 + 0.999602i \(0.508980\pi\)
\(38\) 0 0
\(39\) 0 0
\(40\) 0 0
\(41\) −6.48528 −1.01283 −0.506415 0.862290i \(-0.669030\pi\)
−0.506415 + 0.862290i \(0.669030\pi\)
\(42\) 0 0
\(43\) −1.17157 −0.178663 −0.0893316 0.996002i \(-0.528473\pi\)
−0.0893316 + 0.996002i \(0.528473\pi\)
\(44\) 0 0
\(45\) 0 0
\(46\) 0 0
\(47\) 4.48528 0.654246 0.327123 0.944982i \(-0.393921\pi\)
0.327123 + 0.944982i \(0.393921\pi\)
\(48\) 0 0
\(49\) −5.00000 −0.714286
\(50\) 0 0
\(51\) 0 0
\(52\) 0 0
\(53\) 10.2426 1.40693 0.703467 0.710727i \(-0.251634\pi\)
0.703467 + 0.710727i \(0.251634\pi\)
\(54\) 0 0
\(55\) 0.485281 0.0654353
\(56\) 0 0
\(57\) 0 0
\(58\) 0 0
\(59\) −9.65685 −1.25722 −0.628608 0.777723i \(-0.716375\pi\)
−0.628608 + 0.777723i \(0.716375\pi\)
\(60\) 0 0
\(61\) −11.6569 −1.49251 −0.746254 0.665662i \(-0.768149\pi\)
−0.746254 + 0.665662i \(0.768149\pi\)
\(62\) 0 0
\(63\) 0 0
\(64\) 0 0
\(65\) −2.82843 −0.350823
\(66\) 0 0
\(67\) −5.65685 −0.691095 −0.345547 0.938401i \(-0.612307\pi\)
−0.345547 + 0.938401i \(0.612307\pi\)
\(68\) 0 0
\(69\) 0 0
\(70\) 0 0
\(71\) −8.48528 −1.00702 −0.503509 0.863990i \(-0.667958\pi\)
−0.503509 + 0.863990i \(0.667958\pi\)
\(72\) 0 0
\(73\) 11.3137 1.32417 0.662085 0.749429i \(-0.269672\pi\)
0.662085 + 0.749429i \(0.269672\pi\)
\(74\) 0 0
\(75\) 0 0
\(76\) 0 0
\(77\) 1.17157 0.133513
\(78\) 0 0
\(79\) −14.5858 −1.64103 −0.820515 0.571626i \(-0.806313\pi\)
−0.820515 + 0.571626i \(0.806313\pi\)
\(80\) 0 0
\(81\) 0 0
\(82\) 0 0
\(83\) −3.17157 −0.348125 −0.174063 0.984735i \(-0.555690\pi\)
−0.174063 + 0.984735i \(0.555690\pi\)
\(84\) 0 0
\(85\) 0.485281 0.0526362
\(86\) 0 0
\(87\) 0 0
\(88\) 0 0
\(89\) 17.3137 1.83525 0.917625 0.397448i \(-0.130104\pi\)
0.917625 + 0.397448i \(0.130104\pi\)
\(90\) 0 0
\(91\) −6.82843 −0.715814
\(92\) 0 0
\(93\) 0 0
\(94\) 0 0
\(95\) 1.65685 0.169990
\(96\) 0 0
\(97\) 3.65685 0.371297 0.185649 0.982616i \(-0.440561\pi\)
0.185649 + 0.982616i \(0.440561\pi\)
\(98\) 0 0
\(99\) 0 0
Currently showing only \(a_p\); display all \(a_n\) Currently showing all \(a_n\); display only \(a_p\)

Twists

       By twisting character
Char Parity Ord Type Twist Min Dim
1.1 even 1 trivial 4608.2.a.o.1.1 2
3.2 odd 2 1536.2.a.a.1.2 2
4.3 odd 2 4608.2.a.q.1.1 2
8.3 odd 2 4608.2.a.b.1.2 2
8.5 even 2 4608.2.a.d.1.2 2
12.11 even 2 1536.2.a.h.1.2 yes 2
16.3 odd 4 4608.2.d.f.2305.2 4
16.5 even 4 4608.2.d.h.2305.3 4
16.11 odd 4 4608.2.d.f.2305.3 4
16.13 even 4 4608.2.d.h.2305.2 4
24.5 odd 2 1536.2.a.k.1.1 yes 2
24.11 even 2 1536.2.a.f.1.1 yes 2
48.5 odd 4 1536.2.d.e.769.4 4
48.11 even 4 1536.2.d.b.769.2 4
48.29 odd 4 1536.2.d.e.769.1 4
48.35 even 4 1536.2.d.b.769.3 4
    
        By twisted newform
Twist Min Dim Char Parity Ord Type
1536.2.a.a.1.2 2 3.2 odd 2
1536.2.a.f.1.1 yes 2 24.11 even 2
1536.2.a.h.1.2 yes 2 12.11 even 2
1536.2.a.k.1.1 yes 2 24.5 odd 2
1536.2.d.b.769.2 4 48.11 even 4
1536.2.d.b.769.3 4 48.35 even 4
1536.2.d.e.769.1 4 48.29 odd 4
1536.2.d.e.769.4 4 48.5 odd 4
4608.2.a.b.1.2 2 8.3 odd 2
4608.2.a.d.1.2 2 8.5 even 2
4608.2.a.o.1.1 2 1.1 even 1 trivial
4608.2.a.q.1.1 2 4.3 odd 2
4608.2.d.f.2305.2 4 16.3 odd 4
4608.2.d.f.2305.3 4 16.11 odd 4
4608.2.d.h.2305.2 4 16.13 even 4
4608.2.d.h.2305.3 4 16.5 even 4