COMPLETE EXPERIMENTAL CHARACTERIZATION OF THE QUANTUM STATE OF A LIGHT MODE VIA THE WIGNER FUNCTION AND THE DENSITY-MATRIX - APPLICATION TO QUANTUM PHASE DISTRIBUTIONS OF VACUUM AND SQUEEZED-VACUUM STATES

被引:151
作者
SMITHEY, DT
BECK, M
COOPER, J
RAYMER, MG
FARIDANI, A
机构
[1] UNIV OREGON,INST CHEM PHYS,EUGENE,OR 97403
[2] OREGON STATE UNIV,DEPT MATH,CORVALLIS,OR 97331
来源
PHYSICA SCRIPTA | 1993年 / T48卷
关键词
D O I
10.1088/0031-8949/1993/T48/005
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
We have used the recently demonstrated method of optical homodyne tomography (OHT) to measure the Wigner quasiprobability distribution (Wigner function) and the density matrix for both a squeezed-vacuum and a vacuum state of a single spatial-temporal mode of the electromagnetic field. This method consists of measuring a set of probability distributions for many different Hilbert-space representations of the field-quadrature amplitude, using balanced homodyne detection, and then using tomography to obtain the Wigner function. Once the Wigner function is obtained, one can acquire the density matrix, including its complex phase. In the case of a pure state, this technique yields an experimentally determined complex wavefunction, as demonstrated here for the vacuum. The density matrix represents a complete quantum mechanical characterization of the state. From the measured density matrix we have obtained the Pegg-Barnett optical phase distribution, and from the Wigner function, the Wigner optical phase distribution.
引用
收藏
页码:35 / 44
页数:10
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