We studied the electronic and nuclear dynamics of I-containing organic molecules induced by intense hard X-ray pulses at the XFEL facility SACLA in Japan. The interaction with the intense XFEL pulse causes absorption of multiple X-ray photons by the iodine atom, which results in the creation of many electronic vacancies (positive charges) via the sequential electronic relaxation in the iodine, followed by intramolecular charge redistribution. In a previous study we investigated the subsequent fragmentation by Coulomb explosion of the simplest I-substituted hydrocarbon, iodomethane (CH3I). We carried out three-dimensional momentum correlation measurements of the atomic ions created via Coulomb explosion of the molecule and found that a class...
Molecular dynamics is of fundamental interest in natural science research. The capability of investi...
Understanding x-ray radiation damage is a crucial issue for both medical applications of x rays and ...
The ionization and fragmentation dynamics of iodine molecules (I-2) are traced using very intense (s...
In recent years, free-electron lasers operating in the true X-ray regime have opened up access to th...
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) 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) femtosecond...
We explore time-resolved Coulomb explosion induced by intense, extreme ultraviolet (XUV) femtosecond...
XUV multiphoton ionization of molecules is commonly used in free-electron laser experiments to study...
The ionization and fragmentation dynamics of small molecules (CH<sub>3</sub>SeH, C<sub>2</sub>H<sub>...
XUV multiphoton ionization of molecules is commonly used in free-electron laser experiments to study...
We explore time-resolved Coulomb explosion induced by intense, extreme ultraviolet (XUV) f...
We present studies on intra-molecular charge redistribution in iodine containing molecules upon iodi...
Molecular dynamics is of fundamental interest in natural science research. The capability of investi...
Understanding x-ray radiation damage is a crucial issue for both medical applications of x rays and ...
The ionization and fragmentation dynamics of iodine molecules (I-2) are traced using very intense (s...
In recent years, free-electron lasers operating in the true X-ray regime have opened up access to th...
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) 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) femtosecond...
We explore time-resolved Coulomb explosion induced by intense, extreme ultraviolet (XUV) femtosecond...
XUV multiphoton ionization of molecules is commonly used in free-electron laser experiments to study...
The ionization and fragmentation dynamics of small molecules (CH<sub>3</sub>SeH, C<sub>2</sub>H<sub>...
XUV multiphoton ionization of molecules is commonly used in free-electron laser experiments to study...
We explore time-resolved Coulomb explosion induced by intense, extreme ultraviolet (XUV) f...
We present studies on intra-molecular charge redistribution in iodine containing molecules upon iodi...
Molecular dynamics is of fundamental interest in natural science research. The capability of investi...
Understanding x-ray radiation damage is a crucial issue for both medical applications of x rays and ...
The ionization and fragmentation dynamics of iodine molecules (I-2) are traced using very intense (s...