隱變量理論
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隱變量理論(英語:hidden variable theory)又稱隱變數理論,是由物理學家質疑量子力學完備性而提出的替代理論。歷史上隨著量子力學的發展,而提出了海森堡不確定原理等限制,一別於古典物理,諸如位置與動量等無法同時精準測出其值;此外關於粒子位置等特性由機率密度描述所取代。一些物理學家例如愛因斯坦,認為量子力學並未完整地描述物理系統的狀態,亦即質疑量子力學是不完備的。因此量子力學的背後應該隱藏了一個尚未發現的理論,可以完整解釋物理系統所有可觀測量的演化行為,而避免掉任何不確定性或隨機性。
歷史上愛因斯坦是隱變量理論的主要倡導者,出於對標準量子力學詮釋的機率性解釋的不滿。[1]他曾說:「我相信上帝不擲骰子。」[2]
1935年,愛因斯坦與波多爾斯基、羅森共同提出的EPR悖論(以姓氏字首為縮寫)試圖對哥本哈根詮釋做出挑戰,論文中指出「實在性元素」(即隱變量)應該加入量子力學中,俾使在量子纏結現象中不會出現鬼魅般的超距作用。在提出後,這樣的爭辯仍停留在物理哲學的範疇,直到約翰·貝爾提出貝爾定理方得區分兩者差異。透過實驗證實:一定類型的局域隱變量理論與實驗結果不相符,包括EPR佯謬中提出的詮釋版本。非局域(廣域)的隱變量理論最知名者為德布羅意-玻姆理論。
參見
編輯參考資料
編輯文內引用
編輯延伸閱讀
編輯- Albert Einstein, Boris Podolsky, and Nathan Rosen, "Can Quantum-Mechanical Description of Physical Reality Be Considered Complete?" Physical Review 47, 777–780 (1935).
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- Marco Genovese, "Research on hidden variable theories: a review of recent progresses", in Physics Reports, vol.413, 2005.
外部連接
編輯- The David Bohm Society. (原始內容存檔於2019-10-20) (英語).