The manipulation of the motion of neutral molecules with electric or magnetic fields has seen tremendous progress over the last decade. Recently, these techniques have been extended to the manipulation of large and complex molecules. In this article we introduce experimental approaches to the manipulation of large molecules, i.e., the deflection, focusing and deceleration using electric fields. We detail how these methods can be exploited to spatially separate quantum states and how to select individual conformers of complex molecules. We briefly describe mixed-field orientation experiments made possible by the quantum-state selection. Moreover, we provide an outlook on ultrafast diffraction experiments using these highly controlled samples
Gas-phase molecular physics and physical chemistry experiments commonly use supersonic expansions th...
Abstract External fields have been widely adopted to control and manipulate the prope...
The motion of neutral molecules in a beam can be manipulated with inhomogeneous electric and magneti...
The manipulation of the motion of neutral molecules with electric or magnetic fields has seen tremen...
Supersonic beams of polar molecules are deflected using inhomogeneous electric fields. The quantum- st...
Summary In this thesis the work of my group on the manipulation of the motion of large molecules us...
A strong inhomogeneous static electric field is used to spatially disperse a supersonic beam of pola...
A strong inhomogeneous static electric field is used to spatially disperse a supersonic beam of pola...
L. Holmegaard et al., \textit{Phys.~Rev.~Lett.F. Filsinger et al., \textit{Phys.~Rev.~Lett.Author In...
H. Stapelfeldt and T. Seideman, \textit{Rev.~Mod.~Phys.L. Holmegaard et al., \textit{Phys.~Rev.~Lett...
We experimentally demonstrate ultrafast electron diffraction from transiently aligned molecules in t...
A molecule’s chemical behavior is governed by its electronic and nuclear properties. Imaging the tem...
We make use of an inhomogeneous electrostatic dipole field to impart a quantum-state-dependent defle...
Neutral dipolar molecules can be decelerated and trapped using time-varying inhomogeneous electric f...
H.L. Bethlem et al., J. Phys. BK. Wohlfart et al., submitted to Phys. Rev. AH.L. Bethlem et al., ...
Gas-phase molecular physics and physical chemistry experiments commonly use supersonic expansions th...
Abstract External fields have been widely adopted to control and manipulate the prope...
The motion of neutral molecules in a beam can be manipulated with inhomogeneous electric and magneti...
The manipulation of the motion of neutral molecules with electric or magnetic fields has seen tremen...
Supersonic beams of polar molecules are deflected using inhomogeneous electric fields. The quantum- st...
Summary In this thesis the work of my group on the manipulation of the motion of large molecules us...
A strong inhomogeneous static electric field is used to spatially disperse a supersonic beam of pola...
A strong inhomogeneous static electric field is used to spatially disperse a supersonic beam of pola...
L. Holmegaard et al., \textit{Phys.~Rev.~Lett.F. Filsinger et al., \textit{Phys.~Rev.~Lett.Author In...
H. Stapelfeldt and T. Seideman, \textit{Rev.~Mod.~Phys.L. Holmegaard et al., \textit{Phys.~Rev.~Lett...
We experimentally demonstrate ultrafast electron diffraction from transiently aligned molecules in t...
A molecule’s chemical behavior is governed by its electronic and nuclear properties. Imaging the tem...
We make use of an inhomogeneous electrostatic dipole field to impart a quantum-state-dependent defle...
Neutral dipolar molecules can be decelerated and trapped using time-varying inhomogeneous electric f...
H.L. Bethlem et al., J. Phys. BK. Wohlfart et al., submitted to Phys. Rev. AH.L. Bethlem et al., ...
Gas-phase molecular physics and physical chemistry experiments commonly use supersonic expansions th...
Abstract External fields have been widely adopted to control and manipulate the prope...
The motion of neutral molecules in a beam can be manipulated with inhomogeneous electric and magneti...