How quanta of energy and charge are transported on both atomic spatial and ultrafast timescales is at the heart of modern technology. Recent progress in ultrafast spectroscopy has allowed us to directly study the dynamical response of an electronic system to interaction with an electromagnetic field. Here, we present energy-dependent photoemission delays from the noble metal surfaces Ag(111) and Au(111). An interferometric technique based on attosecond pulse trains is applied simultaneously in a gas phase and a solid-state target to derive surface-specific photoemission delays. Experimental delays on the order of 100 as are in the same time range as those obtained from simulations. The strong variation of measured delays with excitation ene...
For the first time we extended the RABBITT technique to condensed matter. Simultaneous measurement w...
For the first time we extended the RABBITT technique to condensed matter. Simultaneous measurement w...
For the first time we extended the RABBITT technique to condensed matter. Simultaneous measurement w...
How quanta of energy and charge are transported on both atomic spatial and ultrafast timescales is a...
How quanta of energy and charge are transported on both atomic spatial and ultrafast timescales is a...
How quanta of energy and charge are transported on both atomic spatial and ultrafast timescales is a...
Citation: Ambrosio, M. J., & Thumm, U. (2018). Energy-resolved attosecond interferometric photoemis...
Citation: Ambrosio, M. J., & Thumm, U. (2018). Energy-resolved attosecond interferometric photoemis...
Our new detection scheme combines the RABBITT technique in solids with simultaneous measurements in ...
Our new detection scheme combines the RABBITT technique in solids with simultaneous measurements in ...
Our new detection scheme combines the RABBITT technique in solids with simultaneous measurements in ...
Our new detection scheme combines the RABBITT technique in solids with simultaneous measurements in ...
Our new detection scheme combines the RABBITT technique in solids with simultaneous measurements in ...
Our new detection scheme combines the RABBITT technique in solids with simultaneous measurements in ...
Our new detection scheme combines the RABBITT technique in solids with simultaneous measurements in ...
For the first time we extended the RABBITT technique to condensed matter. Simultaneous measurement w...
For the first time we extended the RABBITT technique to condensed matter. Simultaneous measurement w...
For the first time we extended the RABBITT technique to condensed matter. Simultaneous measurement w...
How quanta of energy and charge are transported on both atomic spatial and ultrafast timescales is a...
How quanta of energy and charge are transported on both atomic spatial and ultrafast timescales is a...
How quanta of energy and charge are transported on both atomic spatial and ultrafast timescales is a...
Citation: Ambrosio, M. J., & Thumm, U. (2018). Energy-resolved attosecond interferometric photoemis...
Citation: Ambrosio, M. J., & Thumm, U. (2018). Energy-resolved attosecond interferometric photoemis...
Our new detection scheme combines the RABBITT technique in solids with simultaneous measurements in ...
Our new detection scheme combines the RABBITT technique in solids with simultaneous measurements in ...
Our new detection scheme combines the RABBITT technique in solids with simultaneous measurements in ...
Our new detection scheme combines the RABBITT technique in solids with simultaneous measurements in ...
Our new detection scheme combines the RABBITT technique in solids with simultaneous measurements in ...
Our new detection scheme combines the RABBITT technique in solids with simultaneous measurements in ...
Our new detection scheme combines the RABBITT technique in solids with simultaneous measurements in ...
For the first time we extended the RABBITT technique to condensed matter. Simultaneous measurement w...
For the first time we extended the RABBITT technique to condensed matter. Simultaneous measurement w...
For the first time we extended the RABBITT technique to condensed matter. Simultaneous measurement w...