TY - GEN
T1 - Realizing any specified image rotation in electrostatic and magnetic imaging
AU - Jin, Weiqi
AU - Zhou, Liwei
AU - Ni, Guoqiang
PY - 1995
Y1 - 1995
N2 - A theory of electrostatic and magnetic imaging with any specified image rotation, developed from our previous theory of electrostatic and magnetic imaging, has been studied. The conditions of the axial electrostatic potential and magnetic induction for realizing electrostatic and magnetic imaging with any required image rotation are given. According to the given theory, not only an erect image, but also a specific rotated image (or an inverted image) can be realized. As an example, an analytical distribution of axial electrostatic potential and magnetic induction for this purpose is given to realize the electrostatic and magnetic imaging with any specified image rotated angle and magnification |M| = 1 or |M| ≠ 1.
AB - A theory of electrostatic and magnetic imaging with any specified image rotation, developed from our previous theory of electrostatic and magnetic imaging, has been studied. The conditions of the axial electrostatic potential and magnetic induction for realizing electrostatic and magnetic imaging with any required image rotation are given. According to the given theory, not only an erect image, but also a specific rotated image (or an inverted image) can be realized. As an example, an analytical distribution of axial electrostatic potential and magnetic induction for this purpose is given to realize the electrostatic and magnetic imaging with any specified image rotated angle and magnification |M| = 1 or |M| ≠ 1.
UR - http://www.scopus.com/inward/record.url?scp=0029429791&partnerID=8YFLogxK
M3 - Conference contribution
AN - SCOPUS:0029429791
SN - 0819418811
SN - 9780819418814
T3 - Proceedings of SPIE - The International Society for Optical Engineering
SP - 90
EP - 99
BT - Proceedings of SPIE - The International Society for Optical Engineering
T2 - Electron-Beam Sources and Charged-Particle Optics
Y2 - 10 July 1995 through 14 July 1995
ER -