| | |
| | |
Stat |
Members: 3645 Articles: 2'501'711 Articles rated: 2609
20 April 2024 |
|
| | | |
|
Article overview
| |
|
Optimized Perturbation Theory for Wave Functions of Quantum Systems | T. Hatsuda
; T. Kunihiro
; T. Tanaka
; | Date: |
10 Dec 1996 | Journal: | Phys.Rev.Lett. 78 (1997) 3229-3232 | Subject: | High Energy Physics - Theory; Mathematical Physics; Statistical Mechanics; Functional Analysis | hep-th cond-mat.stat-mech funct-an math-ph math.FA math.MP physics quant-ph | Affiliation: | Univ. of Tsukuba), T. Kunihiro (Ryukoku Univ.) and T. Tanaka (Univ. of Tsukuba | Abstract: | The notion of the optimized perturbation, which has been successfully applied to energy eigenvalues, is generalized to treat wave functions of quantum systems. The key ingredient is to construct an envelope of a set of perturbative wave functions. This leads to a condition similar to that obtained from the principle of minimal sensitivity. Applications of the method to quantum anharmonic oscillator and the double well potential show that uniformly valid wave functions with correct asymptotic behavior are obtained in the first-order optimized perturbation even for strong couplings. | Source: | arXiv, hep-th/9612097 | Services: | Forum | Review | PDF | Favorites |
|
|
No review found.
Did you like this article?
Note: answers to reviews or questions about the article must be posted in the forum section.
Authors are not allowed to review their own article. They can use the forum section.
browser Mozilla/5.0 AppleWebKit/537.36 (KHTML, like Gecko; compatible; ClaudeBot/1.0; +claudebot@anthropic.com)
|
| |
|
|
|
| News, job offers and information for researchers and scientists:
| |