Reticle-masking objective with aspherical lenses
A reticle-masking (REMA) objective for imaging an object plane onto an image plane has a condenser portion, an intermediate portion, and a field lens portion. The three portions together have no more than 10 lenses with a combined total of no more than five aspheric lens surfaces. Each of the three portions of the REMA objective has one or two aspheric lens surfaces.
1. A REMA objective for imaging an object plane onto an image plane, comprising a first partial objective arranged between the object plane and an aperture plane, and a second partial objective arranged between the aperture plane and the image plane, wherein
said first and second partial objectives have a common optical axis,
chief rays originating from an object field in the object plane intersect the optical axis in the region of the aperture plane
the chief rays have field heights Y im in the image plane,
a chief ray and an energy-weighted average ray are given for each field height Y im , and
a maximum angular deviation between chief ray and energy-weighted average ray for all field heights Y im is smaller than 2 mrad; wherein the REMA objective has three through five aspheric elements.
2. The REMA objective according to claim 1 , wherein the maximum angular deviation between chief ray and energy-weighted average ray for all field heights Yim is smaller than 1 mrad.
3. The REMA objective according to claim 1 , wherein said REMA objective has a finite focal length and consists of eight through twelve lenses.
4. The REMA objective according to claim 1 , wherein the first partial objective has three to five lenses.
5. The REMA objective according to claim 1 , wherein the second partial objective has five through seven lenses.
6. The REMA objective according to claim 1 , wherein each ray bundle which starts from a point within the object field and completely fills the image-side numerical aperture in the image plane produces a spot image within an image field in the image plane, and the maximum diameter of the spot image is at most 2% of the maximum field height Y max im .