sage:from sage.modular.dirichlet import DirichletCharacter
H = DirichletGroup(6223, base_ring=CyclotomicField(14))
M = H._module
chi = DirichletCharacter(H, M([5,5]))
pari:[g,chi] = znchar(Mod(4794,6223))
| Modulus: | \(6223\) | |
| Conductor: | \(6223\) |
sage:chi.conductor()
pari:znconreyconductor(g,chi)
|
| Order: | \(14\) |
sage:chi.multiplicative_order()
pari:charorder(g,chi)
|
| Real: | no |
| Primitive: | yes |
sage:chi.is_primitive()
pari:#znconreyconductor(g,chi)==1
|
| Minimal: | yes |
| Parity: | even |
sage:chi.is_odd()
pari:zncharisodd(g,chi)
|
\(\chi_{6223}(111,\cdot)\)
\(\chi_{6223}(125,\cdot)\)
\(\chi_{6223}(3044,\cdot)\)
\(\chi_{6223}(4381,\cdot)\)
\(\chi_{6223}(4794,\cdot)\)
\(\chi_{6223}(5326,\cdot)\)
sage:chi.galois_orbit()
pari:order = charorder(g,chi)
[ charpow(g,chi, k % order) | k <-[1..order-1], gcd(k,order)==1 ]
\((5589,638)\) → \((e\left(\frac{5}{14}\right),e\left(\frac{5}{14}\right))\)
| \(a\) |
\(-1\) | \(1\) | \(2\) | \(3\) | \(4\) | \(5\) | \(6\) | \(8\) | \(9\) | \(10\) | \(11\) | \(12\) |
| \( \chi_{ 6223 }(4794, a) \) |
\(1\) | \(1\) | \(1\) | \(e\left(\frac{5}{7}\right)\) | \(1\) | \(e\left(\frac{3}{7}\right)\) | \(e\left(\frac{5}{7}\right)\) | \(1\) | \(e\left(\frac{3}{7}\right)\) | \(e\left(\frac{3}{7}\right)\) | \(e\left(\frac{4}{7}\right)\) | \(e\left(\frac{5}{7}\right)\) |
sage:chi.jacobi_sum(n)