Quantum Limits on Measurement and Control of a Mechanical Oscillator (Springer Theses)
暫譯: 機械振盪器的量子測量與控制極限(Springer 論文集)
Vivishek Sudhir
- 出版商: Springer
- 出版日期: 2017-12-04
- 售價: $4,510
- 貴賓價: 9.5 折 $4,285
- 語言: 英文
- 頁數: 214
- 裝訂: Hardcover
- ISBN: 3319694308
- ISBN-13: 9783319694306
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相關分類:
量子 Quantum
海外代購書籍(需單獨結帳)
商品描述
This thesis reports on experiments in which the motion of a mechanical oscillator is measured with unprecedented precision. The position fluctuations of the oscillator―a glass nanostring―are measured with an imprecision that is sufficient to resolve its quantum zero-point motion within its thermal decoherence time. The concomitant observation of measurement back-action, in accordance with Heisenberg’s uncertainty principle, verifies the principles of linear quantum measurements on a macroscopic mechanical object. The record of the measurement is used to perform feedback control so as to suppress both classical thermal motion and quantum measurement back-action.
These results verify some of the central and long-standing predictions of quantum measurement theory applied to a macroscopic object. The act of measurement not only perturbs the subject of the measurement―the mechanical oscillator―but also changes the state of the light used to make the measurement. This prediction is verified by demonstrating that the optical field, after having interacted with the mechanical oscillator, contains quantum correlations that render its quadrature fluctuations smaller than those of the vacuum – i.e., the light is squeezed.
Lastly, the thesis reports on some of the first feedback control experiments involving macroscopic objects in the quantum regime, together with an exploration of the quantum limit of feedback control. The book offers a pedagogical account of linear measurement theory, its realization via optical interferometry, and contains a detailed guide to precision optical interferometry..
These results verify some of the central and long-standing predictions of quantum measurement theory applied to a macroscopic object. The act of measurement not only perturbs the subject of the measurement―the mechanical oscillator―but also changes the state of the light used to make the measurement. This prediction is verified by demonstrating that the optical field, after having interacted with the mechanical oscillator, contains quantum correlations that render its quadrature fluctuations smaller than those of the vacuum – i.e., the light is squeezed.
Lastly, the thesis reports on some of the first feedback control experiments involving macroscopic objects in the quantum regime, together with an exploration of the quantum limit of feedback control. The book offers a pedagogical account of linear measurement theory, its realization via optical interferometry, and contains a detailed guide to precision optical interferometry..
商品描述(中文翻譯)
本論文報告了一系列實驗,這些實驗以空前的精確度測量機械振盪器的運動。振盪器的位移波動——一根玻璃奈米線——的測量精度足以在其熱去相干時間內解析其量子零點運動。根據海森堡不確定性原理,同時觀察到的測量反作用驗證了線性量子測量在宏觀機械物體上的原則。測量的記錄被用來執行反饋控制,以抑制經典熱運動和量子測量反作用。
這些結果驗證了量子測量理論應用於宏觀物體的一些核心且長期存在的預測。測量的行為不僅擾動了測量對象——機械振盪器——還改變了用於進行測量的光的狀態。這一預測通過展示光場在與機械振盪器互動後,包含量子相關性,使其象限波動小於真空的波動來得到驗證——即,光被壓縮。
最後,論文報告了一些涉及宏觀物體在量子範疇內的首次反饋控制實驗,並探討了反饋控制的量子極限。本書提供了線性測量理論的教學性說明,通過光學干涉儀的實現,並包含精密光學干涉儀的詳細指南。