{"title":"通过傅里叶分析确定贝塞尔光束锥参数的直径分布强度","authors":"A. Ryzhevich, I. V. Balykin","doi":"10.33581/2520-2243-2022-1-20-34","DOIUrl":null,"url":null,"abstract":"Power spectral density (PSD) of the intensity distribution of an ideal Bessel light beam (BLB) expressions are obtained. It is shown that the PSD of the intensity distribution of an ideal BLB is limited and the upper boundary of the PSD is equal to the doubled cone parameter (the product of the wave number and the sine of the half angle of the cone of wave vectors), and the number of zeros in the PSD of an ideal BLB located in the interval from zero frequency to the upper boundary of the spectrum, is equal to the order of the beam. A technique is proposed for estimating the cone parameter of BLBs by analysing the PSD estimates of diametral distributions – one-dimensional intensity distributions obtained in the transverse plane of the beam along a line passing through the beam axis from transverse two-dimensional BLB intensity distributions recorded in the form of digital computer images. The influence of clipping (the end of the distribution at the boundary of the sensitive sensor), Gaussian and cosine modulations of the diametral distribution on the shape of the spectrum and, in case of clipping, the error in the cone parameter estimation using the proposed method is investigated. The technique is tested on the example of the analysis of experimental BLBs of different orders (BLBm, m = 0, 1, 2). The proposed technique can be used to assess the quality parameters of the BLB. The results of the analysis of the influence of cosine modulation on the shape of the PSD can be used to assess the magnitude of the rounding of the apex of the axicon forming the BLB for control the quality of the axicon manufacturing.","PeriodicalId":17264,"journal":{"name":"Journal of the Belarusian State University. Physics","volume":"35 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2022-01-27","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Determination of the Bessel light beam cone parameter by Fourier analysis of the diametral distribution of the intensity\",\"authors\":\"A. Ryzhevich, I. V. Balykin\",\"doi\":\"10.33581/2520-2243-2022-1-20-34\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Power spectral density (PSD) of the intensity distribution of an ideal Bessel light beam (BLB) expressions are obtained. It is shown that the PSD of the intensity distribution of an ideal BLB is limited and the upper boundary of the PSD is equal to the doubled cone parameter (the product of the wave number and the sine of the half angle of the cone of wave vectors), and the number of zeros in the PSD of an ideal BLB located in the interval from zero frequency to the upper boundary of the spectrum, is equal to the order of the beam. A technique is proposed for estimating the cone parameter of BLBs by analysing the PSD estimates of diametral distributions – one-dimensional intensity distributions obtained in the transverse plane of the beam along a line passing through the beam axis from transverse two-dimensional BLB intensity distributions recorded in the form of digital computer images. The influence of clipping (the end of the distribution at the boundary of the sensitive sensor), Gaussian and cosine modulations of the diametral distribution on the shape of the spectrum and, in case of clipping, the error in the cone parameter estimation using the proposed method is investigated. The technique is tested on the example of the analysis of experimental BLBs of different orders (BLBm, m = 0, 1, 2). The proposed technique can be used to assess the quality parameters of the BLB. The results of the analysis of the influence of cosine modulation on the shape of the PSD can be used to assess the magnitude of the rounding of the apex of the axicon forming the BLB for control the quality of the axicon manufacturing.\",\"PeriodicalId\":17264,\"journal\":{\"name\":\"Journal of the Belarusian State University. 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引用次数: 0
摘要
得到了理想贝塞尔光束强度分布的功率谱密度(PSD)表达式。结果表明,理想的强度分布的PSD BLB有限和PSD的上限等于翻了一番锥参数(波数的乘积和的正弦半波向量的锥角),和PSD的零理想BLB位于区间从零频率的上限,等于梁的顺序。本文提出了一种通过分析以数字计算机图像形式记录的BLB横向二维强度分布在光束横切面沿穿过光束轴的直线得到的直径分布-一维强度分布的PSD估计来估计BLB锥参数的技术。研究了裁剪(敏感传感器边界处分布的末端)、直径分布的高斯调制和余弦调制对光谱形状的影响,以及在裁剪的情况下,使用所提出的方法进行锥参数估计的误差。以不同阶次实验BLB (BLBm, m = 0,1, 2)的分析为例,对该方法进行了验证,该方法可用于评估BLB的质量参数。余弦调制对PSD形状的影响分析结果可用于评估形成BLB的轴顶点的圆角大小,以控制轴顶点的制造质量。
Determination of the Bessel light beam cone parameter by Fourier analysis of the diametral distribution of the intensity
Power spectral density (PSD) of the intensity distribution of an ideal Bessel light beam (BLB) expressions are obtained. It is shown that the PSD of the intensity distribution of an ideal BLB is limited and the upper boundary of the PSD is equal to the doubled cone parameter (the product of the wave number and the sine of the half angle of the cone of wave vectors), and the number of zeros in the PSD of an ideal BLB located in the interval from zero frequency to the upper boundary of the spectrum, is equal to the order of the beam. A technique is proposed for estimating the cone parameter of BLBs by analysing the PSD estimates of diametral distributions – one-dimensional intensity distributions obtained in the transverse plane of the beam along a line passing through the beam axis from transverse two-dimensional BLB intensity distributions recorded in the form of digital computer images. The influence of clipping (the end of the distribution at the boundary of the sensitive sensor), Gaussian and cosine modulations of the diametral distribution on the shape of the spectrum and, in case of clipping, the error in the cone parameter estimation using the proposed method is investigated. The technique is tested on the example of the analysis of experimental BLBs of different orders (BLBm, m = 0, 1, 2). The proposed technique can be used to assess the quality parameters of the BLB. The results of the analysis of the influence of cosine modulation on the shape of the PSD can be used to assess the magnitude of the rounding of the apex of the axicon forming the BLB for control the quality of the axicon manufacturing.