Relation between nuclear shape and it spin number

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Renato Murback
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What is the relation between the nuclear shape (or charge distribution) and the nuclear spin?
I'm beginner in NMR studies and now I'm studying quadrupole interaction. In this case, spins larger than 1/2 have a non-spherical charge distribution and this asymmetry interacts with external electric fields.
But the question is: What is the relation between the nuclear shape (or charge distribution) and the nuclear spin? I know spin 1/2 has a spherical shape, and larger spins have differents shapes.... But why? How nuclear spins implies the nuclear shape?
Thank you very much for your attention
 
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how is these spin numbers related with the nuclear shape? what is the relation between them?

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I don't want to know the shape. I want to know the physical relation between the shape and the spin number. How does spin implies the shape? Or how does nuclear shape implies the spin number?
 
I'll learn about that. Thank you
 
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While not a proof, here is an example that shows how Wigner-Eckhart works. Suppose I want the quadrupole moment of a spin-½ system. That's <½| ℚ | ½> where ℚ is the quadrupole operator. ℚ | ½> = a | 3/2 > + b | 5/2 > where a and b are numbers. Messy to calculate, but just numbers. But since <1/2 | 3/2 > and <1/2 | 5/2 >are both zero, we don't need to: <½| ℚ | ½> = 0. A spin-½ system cannot have a quadrupole moment.
 
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