Resolution and characteristics of an image-plane digital holographic microscopic system
Song Xiu-f
Abstract
Song Xiu-f
Abstract
In order to improve image quality,the point spread functions of practical image-plane digital holographic microscopic system(IPDHMS)with both spherical and plane reference waves are derived. The imaging resolution and imaging characteristics are analyzed.The corresponding experimental investigations are conducted.The results show that the imaging resolution of IPDHMS depends on the imaging resolution of the microscopic objective(MO)and the pixel size,but independent of the photosensitive surface size of the CCD.The big size of the illuminated region of the test sample doesn′t affect the recording and the numerical reconstruction of the hologram.All frequency components that pass through the MO of each point in the imaging area can be completely recorded and reconstructed.IPDHMS is an optimized holographic imaging system,which can achieve high-quality imaging.The experimental results demonstrate the validity of theoretical analysis.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
In order to improve image quality,the point spread functions of practical image-plane digital holographic microscopic system(IPDHMS)with both spherical and plane reference waves are derived. The imaging resolution and imaging characteristics are analyzed.The corresponding experimental investigations are conducted.The results show that the imaging resolution of IPDHMS depends on the imaging resolution of the microscopic objective(MO)and the pixel size,but independent of the photosensitive surface size of the CCD.The big size of the illuminated region of the test sample doesn′t affect the recording and the numerical reconstruction of the hologram.All frequency components that pass through the MO of each point in the imaging area can be completely recorded and reconstructed.IPDHMS is an optimized holographic imaging system,which can achieve high-quality imaging.The experimental results demonstrate the validity of theoretical analysis.
Key concepts: Holography, Optics, Pixel, Digital holographic microscopy, Resolution (logic), Image quality, Image plane, Plane (geometry)