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From quartic anharmonic oscillator to double well potential

Published 30 Oct 2021 in quant-ph and physics.atom-ph | (2111.01546v2)

Abstract: It is already known that the quantum quartic single-well anharmonic oscillator $V_{ao}(x)=x2+g2 x4$ and double-well anharmonic oscillator $V_{dw}(x)= x2(1 - gx)2$ are essentially one-parametric, their eigenstates depend on a combination $(g2 \hbar)$. Hence, these problems are reduced to study the potentials $V_{ao}=u2+u4$ and $V_{dw}=u2(1-u)2$, respectively. It is shown that by taking uniformly-accurate approximation for anharmonic oscillator eigenfunction $\Psi_{ao}(u)$, obtained recently, see JPA 54 (2021) 295204 [1] and Arxiv 2102.04623 [2], and then forming the function $\Psi_{dw}(u)=\Psi_{ao}(u) \pm \Psi_{ao}(u-1)$ allows to get the highly accurate approximation for both the eigenfunctions of the double-well potential and its eigenvalues.

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