Structural imaging of transient excited-state species is a key goal of molecular physics, promising to unveil rich information about the dynamics underpinning photochemical transformations. However, separating the electronic and nuclear contributions to the spectroscopic observables is challenging, and typically requires the application of high-level theory. Here, we employ site-selective ionisation via ultrashort soft X-ray pulses and time-resolved Coulomb explosion imaging to interrogate structural dynamics of the ultraviolet photochemistry of carbon disulfide. This prototypical system exhibits the complex motifs of polyatomic photochemistry, including strong non-adiabatic couplings, vibrational mode couplings, and intersystem crossing. I...
The photodissociation dynamics of CH3I and CH2ClI at 272 nm were investigated by time-resolved Coulo...
Disulfide bonds are pivotal for the structure, function, and stability of proteins, and understandin...
The dynamics following laser-induced molecular photodissociation of gas-phase CH$_{2}$BrI at 271.6 n...
Structural imaging of transient excited-state species is a key goal of molecular physics, promising ...
Structural imaging of transient excited-state species is a key goal of molecular physics, promising ...
The structural dynamics of photoexcited gas-phase carbon disulfide (CS2) molecules are investigated ...
We explore time-resolved Coulomb explosion induced by intense, extreme ultraviolet (XUV) femtosecond...
We explore time-resolved Coulomb explosion induced by intense, extreme ultraviolet (XUV) femtosecond...
We explore time-resolved Coulomb explosion induced by intense, extreme ultraviolet (XUV) f...
We have observed details of the internal motion and dissociation channels in photoexcited carbon dis...
Disulfide bonds are pivotal for the structure, function, and stability of proteins, and understandin...
We have observed details of the internal motion and dissociation channels in photoexcited carbon dis...
The photodissociation dynamics of CH$_3$I and CH$_2$ClI at 272 nm were investigated by time-resolved...
Recent developments in X-ray free-electron lasers have enabled a novel site-selective probe of coupl...
The photodissociation dynamics of CH3I and CH2ClI at 272 nm were investigated by time-resolved Coulo...
Disulfide bonds are pivotal for the structure, function, and stability of proteins, and understandin...
The dynamics following laser-induced molecular photodissociation of gas-phase CH$_{2}$BrI at 271.6 n...
Structural imaging of transient excited-state species is a key goal of molecular physics, promising ...
Structural imaging of transient excited-state species is a key goal of molecular physics, promising ...
The structural dynamics of photoexcited gas-phase carbon disulfide (CS2) molecules are investigated ...
We explore time-resolved Coulomb explosion induced by intense, extreme ultraviolet (XUV) femtosecond...
We explore time-resolved Coulomb explosion induced by intense, extreme ultraviolet (XUV) femtosecond...
We explore time-resolved Coulomb explosion induced by intense, extreme ultraviolet (XUV) f...
We have observed details of the internal motion and dissociation channels in photoexcited carbon dis...
Disulfide bonds are pivotal for the structure, function, and stability of proteins, and understandin...
We have observed details of the internal motion and dissociation channels in photoexcited carbon dis...
The photodissociation dynamics of CH$_3$I and CH$_2$ClI at 272 nm were investigated by time-resolved...
Recent developments in X-ray free-electron lasers have enabled a novel site-selective probe of coupl...
The photodissociation dynamics of CH3I and CH2ClI at 272 nm were investigated by time-resolved Coulo...
Disulfide bonds are pivotal for the structure, function, and stability of proteins, and understandin...
The dynamics following laser-induced molecular photodissociation of gas-phase CH$_{2}$BrI at 271.6 n...