The level of control that one has over neutral molecules in beams dictates their possible applications. Here we experimentally demonstrate that state-selected, neutral molecules can be kept together in a few mm long packet for a distance of over one mile. This is accomplished in a circular arrangement of 40 straight electrostatic hexapoles through which the molecules propagate over 1000 times. Up to 19 packets of molecules have simultaneously been stored in this ring structure. This brings the realization of a molecular low-energy collider within reach. © 2010 The American Physical Society
Electrostatic hexapoles are common tools in physical chemistry for performing state-selection and fo...
Electrostatic hexapoles are common tools in physical chemistry for performing state-selection and fo...
Electrostatic hexapoles are common tools in physical chemistry for performing state-selection and fo...
The level of control that one has over neutral molecules in beams dictates their possible applicatio...
Many of the tools for manipulating the motion of neutral atoms and molecules take their inspiration ...
Many of the tools for manipulating the motion of neutral atoms and molecules take their inspiration ...
Many of the tools for manipulating the motion of neutral atoms and molecules take their inspiration ...
Many of the tools for manipulating the motion of neutral atoms and molecules take their inspiration ...
Here we report on a synchrotron for neutral molecules that consists of two hexapole focusers bent in...
Here we report on a synchrotron for neutral molecules that consists of two hexapole focusers bent in...
The ability to cool and manipulate atoms with light has yielded atom interferometry, precision spect...
The ability to cool and manipulate atoms with light has yielded atom interferometry, precision spect...
The ability to cool and manipulate atoms with light has yielded atom interferometry, precision spect...
We present a synchrotron for polar molecules consisting of 40 straight hexapoles arranged in a circl...
Many of the tools for manipulating the motion of neutral atoms and molecules take their inspiration ...
Electrostatic hexapoles are common tools in physical chemistry for performing state-selection and fo...
Electrostatic hexapoles are common tools in physical chemistry for performing state-selection and fo...
Electrostatic hexapoles are common tools in physical chemistry for performing state-selection and fo...
The level of control that one has over neutral molecules in beams dictates their possible applicatio...
Many of the tools for manipulating the motion of neutral atoms and molecules take their inspiration ...
Many of the tools for manipulating the motion of neutral atoms and molecules take their inspiration ...
Many of the tools for manipulating the motion of neutral atoms and molecules take their inspiration ...
Many of the tools for manipulating the motion of neutral atoms and molecules take their inspiration ...
Here we report on a synchrotron for neutral molecules that consists of two hexapole focusers bent in...
Here we report on a synchrotron for neutral molecules that consists of two hexapole focusers bent in...
The ability to cool and manipulate atoms with light has yielded atom interferometry, precision spect...
The ability to cool and manipulate atoms with light has yielded atom interferometry, precision spect...
The ability to cool and manipulate atoms with light has yielded atom interferometry, precision spect...
We present a synchrotron for polar molecules consisting of 40 straight hexapoles arranged in a circl...
Many of the tools for manipulating the motion of neutral atoms and molecules take their inspiration ...
Electrostatic hexapoles are common tools in physical chemistry for performing state-selection and fo...
Electrostatic hexapoles are common tools in physical chemistry for performing state-selection and fo...
Electrostatic hexapoles are common tools in physical chemistry for performing state-selection and fo...