Direct write atom lithography is a technique in which nearly resonant light is used to pattern an atom beam. Nanostructures are formed when the patterned beam falls onto a substrate. We have applied this lithography scheme to a ferromagnetic element, using a 372 nm laser light standing wave to pattern a beam of iron atoms. In this proof-of-principle experiment, we have deposited a grid of 50-nm-wide lines 186 nm apart. These ultraregular, large-scale, ferromagnetic wire arrays may generate exciting new developments in the fields of spintronics and nanomagnetics. (C) 2004 American Institute of Physics
Using direct-write atom lithography, Fe nanolines are deposited with a pitch of 186 nm, a full width...
Lithography based on laser focusing of a beam of neutral iron atoms shows great promise for creating...
We aim to apply atom optical techniques to iron to produce periodic magnetic nanostructures. Laser c...
Direct write atom lithography is a technique in which nearly resonant light is used to pattern an at...
Direct write atom lithography is a technique in which nearly resonant light is used to pattern an at...
Direct write atom lithography is a technique in which nearly resonant light is used to pattern an at...
Direct write atom lithography is a technique in which nearly resonant light is used to pattern an at...
Direct write atom lithography is a technique in which nearly resonant light is used to pattern an at...
Direct write atom lithography is a technique in which nearly resonant light is used to pattern an at...
Direct write atom lithography is a technique in which nearly resonant light is used to pattern an at...
Atom lithography is a technique in which a light field is used to pattern an atomic beam. This patte...
Atom lithography is a technique to structure layers of atoms during deposition, using interactions o...
Direct-write atom lithography is a technique in which highly periodic nanostructures are directly de...
Using direct-write atom lithography, Fe nanolines are deposited with a pitch of 186 nm, a full width...
Using direct-write atom lithography, Fe nanolines are deposited with a pitch of 186 nm, a full width...
Using direct-write atom lithography, Fe nanolines are deposited with a pitch of 186 nm, a full width...
Lithography based on laser focusing of a beam of neutral iron atoms shows great promise for creating...
We aim to apply atom optical techniques to iron to produce periodic magnetic nanostructures. Laser c...
Direct write atom lithography is a technique in which nearly resonant light is used to pattern an at...
Direct write atom lithography is a technique in which nearly resonant light is used to pattern an at...
Direct write atom lithography is a technique in which nearly resonant light is used to pattern an at...
Direct write atom lithography is a technique in which nearly resonant light is used to pattern an at...
Direct write atom lithography is a technique in which nearly resonant light is used to pattern an at...
Direct write atom lithography is a technique in which nearly resonant light is used to pattern an at...
Direct write atom lithography is a technique in which nearly resonant light is used to pattern an at...
Atom lithography is a technique in which a light field is used to pattern an atomic beam. This patte...
Atom lithography is a technique to structure layers of atoms during deposition, using interactions o...
Direct-write atom lithography is a technique in which highly periodic nanostructures are directly de...
Using direct-write atom lithography, Fe nanolines are deposited with a pitch of 186 nm, a full width...
Using direct-write atom lithography, Fe nanolines are deposited with a pitch of 186 nm, a full width...
Using direct-write atom lithography, Fe nanolines are deposited with a pitch of 186 nm, a full width...
Lithography based on laser focusing of a beam of neutral iron atoms shows great promise for creating...
We aim to apply atom optical techniques to iron to produce periodic magnetic nanostructures. Laser c...