DLMF:10.9.E29 (Q3099)

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DLMF:10.9.E29
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    J μ ( x ) J ν ( x ) = 1 2 π i - i i Γ ( - t ) Γ ( 2 t + μ + ν + 1 ) ( 1 2 x ) μ + ν + 2 t Γ ( t + μ + 1 ) Γ ( t + ν + 1 ) Γ ( t + μ + ν + 1 ) d t , Bessel-J 𝜇 𝑥 Bessel-J 𝜈 𝑥 1 2 𝜋 𝑖 superscript subscript 𝑖 𝑖 Euler-Gamma 𝑡 Euler-Gamma 2 𝑡 𝜇 𝜈 1 superscript 1 2 𝑥 𝜇 𝜈 2 𝑡 Euler-Gamma 𝑡 𝜇 1 Euler-Gamma 𝑡 𝜈 1 Euler-Gamma 𝑡 𝜇 𝜈 1 𝑡 {\displaystyle{\displaystyle J_{\mu}\left(x\right)J_{\nu}\left(x\right)=\frac{% 1}{2\pi i}\int_{-i\infty}^{i\infty}\frac{\Gamma\left(-t\right)\Gamma\left(2t+% \mu+\nu+1\right)(\tfrac{1}{2}x)^{\mu+\nu+2t}}{\Gamma\left(t+\mu+1\right)\Gamma% \left(t+\nu+1\right)\Gamma\left(t+\mu+\nu+1\right)}\mathrm{d}t,}}
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    DLMF:10.9.E29
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    x > 0 𝑥 0 {\displaystyle{\displaystyle x>0}}
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