In radiofrequency ion traps, electric fields are produced by applying time-varying potentials between machined metal electrodes. The electrode shape constitutes a boundary condition and defines the field shape. This paper presents a new approach to making ion traps in which the electrodes consist of two ceramic discs, the facing surfaces of which are lithographically imprinted with sets of concentric metal rings and overlaid with a resistive material. A radial potential function can be applied to the resistive material such that the potential between the plates is quadrupolar, and ions are trapped between the plates. The electric field is independent of geometry and can be optimized electronically. The trap can produce any trapping field ge...
A novel linear ion trap mass analyzer was developed using just four elongated planar electrodes, mou...
A description of the design and microfabrication of arrays of micrometer-scale cylindrical ion traps...
Radio-frequency (rf) traps are ideal places to store cold ions for spectroscopic experiments. Specif...
In radiofrequency ion traps, electric fields are produced by applying time-varying potentials betwee...
We present a linear type ion trap consisting of metal lines that are lithographically patterned onto...
We present a linear type ion trap consisting of metal lines that are lithographically patterned onto...
We present a linear type ion trap consisting of metal lines that are lithographically patterned onto...
We present a linear type ion trap consisting of metal lines that are lithographically patterned onto...
We describe a novel high aspect ratio radiofrequency linear ion trap geometry that is amenable to mo...
We report the design and performance of a novel radiofrequency (RF) ion trap mass analyzer, the plan...
Miniaturization of mass analyzers has been studied for its implication in fieldable instrumentation....
Miniaturization of mass analyzers has been studied for its implication in fieldable instrumentation....
Miniaturization of mass analyzers has been studied for its implication in fieldable instrumentation....
A simple method has been proposed to study the effects of multipole components on the performance of...
A novel linear ion trap mass analyzer was developed using just four elongated planar electrodes, mou...
A novel linear ion trap mass analyzer was developed using just four elongated planar electrodes, mou...
A description of the design and microfabrication of arrays of micrometer-scale cylindrical ion traps...
Radio-frequency (rf) traps are ideal places to store cold ions for spectroscopic experiments. Specif...
In radiofrequency ion traps, electric fields are produced by applying time-varying potentials betwee...
We present a linear type ion trap consisting of metal lines that are lithographically patterned onto...
We present a linear type ion trap consisting of metal lines that are lithographically patterned onto...
We present a linear type ion trap consisting of metal lines that are lithographically patterned onto...
We present a linear type ion trap consisting of metal lines that are lithographically patterned onto...
We describe a novel high aspect ratio radiofrequency linear ion trap geometry that is amenable to mo...
We report the design and performance of a novel radiofrequency (RF) ion trap mass analyzer, the plan...
Miniaturization of mass analyzers has been studied for its implication in fieldable instrumentation....
Miniaturization of mass analyzers has been studied for its implication in fieldable instrumentation....
Miniaturization of mass analyzers has been studied for its implication in fieldable instrumentation....
A simple method has been proposed to study the effects of multipole components on the performance of...
A novel linear ion trap mass analyzer was developed using just four elongated planar electrodes, mou...
A novel linear ion trap mass analyzer was developed using just four elongated planar electrodes, mou...
A description of the design and microfabrication of arrays of micrometer-scale cylindrical ion traps...
Radio-frequency (rf) traps are ideal places to store cold ions for spectroscopic experiments. Specif...