Optical absorption microscopy of localized atoms at microwave domain: two-dimensional localization based on the projection of three-dimensional localization

被引:9
|
作者
Dutta, Bibhas Kumar [1 ]
Panchadhyayee, Pradipta [2 ]
Bayal, Indranil [3 ]
Das, Nityananda [4 ]
Mahapatra, Prasanta Kumar [5 ]
机构
[1] WB State Univ, Dept Phys, Sree Chaitanya Coll, North 24 Parganas, Habra 743268, WB, India
[2] Contai Vidyasagar Univ, Prabhat Kumar Coll, Dept Phys UG & PG, Purba Medinipur 721401, WB, India
[3] Gopinathpur High Sch HS Gopinathpur, Purba Medinipur 721633, WB, India
[4] Sidho Kanho Birsha Univ, JK Coll, Dept Phys, Purulia 723101, WB, India
[5] Siksha O Anusandhan Univ, ITER, Bhubaneswar 751030, Odisha, India
关键词
2-LEVEL ATOM; DIFFRACTION;
D O I
10.1038/s41598-019-57141-z
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
A new approach for achieving two - dimensional (2D) atom localization microscopy based on the projection of three - dimensional (3D) localization in the plane of the detector is described in the present work. Spatial variation of the position-dependent 2D-localization pattern in the xy-plane is obtained with the shifting of the position of the detector along the z-axis under the parallel- and cross- axis configurations of the standing-wave fields. An attempt is made to study the 2D-localization characteristics in the specific parametric conditions for which the localization structures evolve with different shapes eventually leading to 100% detection probability of the atom both in the sub-wavelength and sub-half-wavelength regimes. The scope of tuning the cross-axis configuration over a wide range adds novelty and robustness to this model. Apart from the 2D-localization, various localization patterns with eight- to single-peak structures appear as interesting outcomes through the efficient manipulation of control parameters in the study of one-dimensional (1D) atom localization. The application of the traveling-wave field or its equivalent appears to be unique in achieving high-precision localization with maximal probability (100%) in both the 1D and 2D field-configuration schemes. Proper tuning of the traveling wave accompanied by the standing wave in the 1D scheme results in the single-peak localization in the sub-half-wavelength range. As a whole, the present work seems to be very much efficient for high-precision optical lithography.
引用
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页数:14
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