Abstract:
Methods of manufacturing a pellicle for a lithographic apparatus are disclosed. In one arrangement the method comprises depositing at least one graphene layer (2) on a planar surface (4) of a substrate (6). The substrate comprises a first substrate portion and a second substrate portion (12). The method further comprises removing the first substrate portion to form a freestanding membrane (14) from the at least one graphene layer. The freestanding membrane is supported by the second substrate portion.
Abstract:
There is provided a pellicle membrane comprising a population of metal silicide crystals in a silicon- based matrix, wherein the pellicle membrane has an emissivity of 0.3 or more. Also provided is a method of manufacturing a pellicle membrane, a pellicle assembly, a lithographic apparatus comprising such a pellicle membrane or pellicle assembly. Also described is the use of such a pellicle membrane, pellicle assembly, or lithographic apparatus in a lithographic apparatus or method.
Abstract:
There is provided a pellicle membrane comprising a population of metal silicide crystals in a silicon- based matrix, wherein the pellicle membrane has an emissivity of 0.3 or more. Also provided is a method of manufacturing a pellicle membrane, a pellicle assembly, a lithographic apparatus comprising such a pellicle membrane or pellicle assembly. Also described is the use of such a pellicle membrane, pellicle assembly, or lithographic apparatus in a lithographic apparatus or method.
Abstract:
A pellicle for a lithographic apparatus, wherein the pellicle comprises nitridated metal silicide or nitridated silicon as well as a method of manufacturing the same. Also disclosed is the use of a nitridated metal silicide or nitridated silicon pellicle in a lithographic apparatus. Also disclosed is a pellicle for a lithographic apparatus comprising at least one compensating layer selected and configured to counteract changes in the transmissivity of the pellicle upon exposure to EUV radiation as well as a method of controlling the transmissivity of a pellicle and a method of designing a pellicle.
Abstract:
A method for manufacturing a membrane assembly for EUV lithography, the method comprising: providing a stack comprising: at least one membrane layer supported by a planar substrate, wherein the planar substrate comprises an inner region and a border region around the inner region; and a first sacrificial layer between the planar substrate and the membrane layer; selectively removing the inner region of the planar substrate, wherein the step of selectively removing the inner region of the planar substrate comprises using an etchant which has a similar etch rate for the membrane layer and its oxide and a substantially different etch rate for the first sacrificial layer; such that the membrane assembly comprises: a membrane formed from the at least one membrane layer; and a border holding the membrane, the border comprising the border region of the planar substrate and the first sacrificial layer situated between the border and the membrane layer.
Abstract:
The invention relates to a pellicle assembly comprising a pellicle frame defining a surface onto which a pellicle is attached. The pellicle assembly comprises one or more three-dimensional expansion structures that allow the pellicle to expand under stress. The invention also relates to a pellicle assembly for a patterning device comprising one or more actuators for moving the pellicle assembly towards and way from the patterning device.
Abstract:
Methods of manufacturing a pellicle for a lithographic apparatus are disclosed. In one arrangement the method comprises depositing at least one graphene layer (2) on a planar surface (4) of a substrate (6). The substrate comprises a first substrate portion and a second substrate portion (12). The method further comprises removing the first substrate portion to form a freestanding membrane (14) from the at least one graphene layer. The freestanding membrane is supported by the second substrate portion.
Abstract:
A method of manufacturing a pellicle membrane, the method comprising: providing a first sacrificial layer on a planar substrate to form a stack; and providing, to at least a portion of the stack, at least one metal silicide or doped metal silicide pellicle core layer which forms at least part of the pellicle membrane is described. Also described is a pellicle membrane assembly comprising a substrate, a first sacrificial layer, and at least one metal silicide or doped metal silicide pellicle layer which forms at least part of a pellicle core, as well as a lithography apparatus comprising such pellicles.