Extreme ultraviolet (EUV) lithography is under development for possible deployment at the 32-nm technology node. One active area of research in this field is the development of photoresists that can meet the stringent requirements (high resolution, high sensitivity, low LER, etc.) of lithography in this regime. In order to facilitate research in this and other areas related to EUV lithography, a printing station based upon the 0.3-NA Micro Exposure Tool (MET) optic was established at the Advanced Light Source, a synchrotron facility at Lawrence Berkeley National Laboratory. A resist modeling technique using a resist point spread function has been shown to have good agreement with experiments for certain EUV resists such as Shipley EUV-2D [2...
Although extreme ultraviolet (EUV) lithography offers the possibility of very high-resolution patter...
Microfield exposure tools (METs) continue to playa dominant role in the development of extreme ultra...
Image blur due to chemical amplification represents a fundamental limit to photoresist performance a...
Extreme ultraviolet (EUV) lithography is under development for possible deployment at the 32-nm tech...
Extreme ultraviolet (EUV) - lithography at a wavelength around 13.5 nm is considered as the most pro...
For volume nanoelectronics production using Extreme ultraviolet (EUV) lithography [1] to become a re...
Although extreme ultraviolet (EUV) lithography offers the possibility of very high-resolution patter...
The work described in this dissertation has improved three essential components of extreme ultraviol...
Although extreme ultraviolet (EUV) lithography offers the possibility of very high-resolution patter...
Synchrotron-based EUV exposure tools continue to play a crucial roll in the development of EUV litho...
EUV lithography (EUVL) is a candidate technology for patterning of ever shrinking featuresizes in in...
EUV lithography (EUVL) is a candidate technology for patterning of ever shrinking featuresizes in in...
Resolution, line-edge roughness (LWR), and sensitivity of photoresists have an essential importance ...
One of the major challenges facing the commercialization of extreme ultraviolet (EUV) lithography re...
A new class of resist materials has been developed that is based on a family of heterometallic rings...
Although extreme ultraviolet (EUV) lithography offers the possibility of very high-resolution patter...
Microfield exposure tools (METs) continue to playa dominant role in the development of extreme ultra...
Image blur due to chemical amplification represents a fundamental limit to photoresist performance a...
Extreme ultraviolet (EUV) lithography is under development for possible deployment at the 32-nm tech...
Extreme ultraviolet (EUV) - lithography at a wavelength around 13.5 nm is considered as the most pro...
For volume nanoelectronics production using Extreme ultraviolet (EUV) lithography [1] to become a re...
Although extreme ultraviolet (EUV) lithography offers the possibility of very high-resolution patter...
The work described in this dissertation has improved three essential components of extreme ultraviol...
Although extreme ultraviolet (EUV) lithography offers the possibility of very high-resolution patter...
Synchrotron-based EUV exposure tools continue to play a crucial roll in the development of EUV litho...
EUV lithography (EUVL) is a candidate technology for patterning of ever shrinking featuresizes in in...
EUV lithography (EUVL) is a candidate technology for patterning of ever shrinking featuresizes in in...
Resolution, line-edge roughness (LWR), and sensitivity of photoresists have an essential importance ...
One of the major challenges facing the commercialization of extreme ultraviolet (EUV) lithography re...
A new class of resist materials has been developed that is based on a family of heterometallic rings...
Although extreme ultraviolet (EUV) lithography offers the possibility of very high-resolution patter...
Microfield exposure tools (METs) continue to playa dominant role in the development of extreme ultra...
Image blur due to chemical amplification represents a fundamental limit to photoresist performance a...