We study how time- and angle-resolved photoemission (tr-ARPES) reveals the dynamics of BCS-type, s-wave superconducting systems with time-varying order parameters. Approximate methods are discussed, based on previous approaches to either optical conductivity or quantum dot transport, to enable computationally efficient prediction of photoemission spectra. One use of such predictions is to enable extraction of the underlying order parameter dynamics from experimental data, which is topical given the rapidly growing use of tr-ARPES in studying unconventional superconductivity. The methods considered model the two-time lesser Green's functions with an approximated lesser self-energy that describes relaxation by coupling of the system to two ty...
Motivated by recent development in time-resolved angle-resolved photoemission spectroscopy (trARPES)...
The energy-time uncertainty is an intrinsic limit for time-resolved experiments imposing a tradeoff ...
With more than a quarter century of study, the high temperature superconducting cuprates still repre...
We study how time- and angle-resolved photoemission (tr-ARPES) reveals the dynamics of BCS-type, s-w...
The origin of high-temperature superconductivity in cuprate ceramics is one of the great outstanding...
In this article, we review our angle‐ and time‐resolved photoemission studies (ARPES and trARPES) on...
We review recent work on the theory for pump/probe photoemission spectroscopy of electron‐phonon med...
High-Temperature Superconductivity (HTSC) has inspired decades of research since its discovery in 19...
Ever since high-temperature cuprate superconductors were discovered in 1986, they have been a source...
We perform time- and angle-resolved photoemission spectroscopy (trARPES) on optimally doped Bi_{2}Sr...
A theory of angle-resolved photoemission (ARPES) in doped charge-transfer :.1ott insulators is devel...
This thesis is devoted to studies of high temperature superconductors and related materials using th...
This paper summarizes experimental results presented at the international conference honoring Prof. ...
A hallmark in the cuprate family of high-temperature superconductors is the nodal-antinodal dichotom...
Motivated by recent development in time-resolved angle-resolved photoemission spectroscopy (trARPES)...
The energy-time uncertainty is an intrinsic limit for time-resolved experiments imposing a tradeoff ...
With more than a quarter century of study, the high temperature superconducting cuprates still repre...
We study how time- and angle-resolved photoemission (tr-ARPES) reveals the dynamics of BCS-type, s-w...
The origin of high-temperature superconductivity in cuprate ceramics is one of the great outstanding...
In this article, we review our angle‐ and time‐resolved photoemission studies (ARPES and trARPES) on...
We review recent work on the theory for pump/probe photoemission spectroscopy of electron‐phonon med...
High-Temperature Superconductivity (HTSC) has inspired decades of research since its discovery in 19...
Ever since high-temperature cuprate superconductors were discovered in 1986, they have been a source...
We perform time- and angle-resolved photoemission spectroscopy (trARPES) on optimally doped Bi_{2}Sr...
A theory of angle-resolved photoemission (ARPES) in doped charge-transfer :.1ott insulators is devel...
This thesis is devoted to studies of high temperature superconductors and related materials using th...
This paper summarizes experimental results presented at the international conference honoring Prof. ...
A hallmark in the cuprate family of high-temperature superconductors is the nodal-antinodal dichotom...
Motivated by recent development in time-resolved angle-resolved photoemission spectroscopy (trARPES)...
The energy-time uncertainty is an intrinsic limit for time-resolved experiments imposing a tradeoff ...
With more than a quarter century of study, the high temperature superconducting cuprates still repre...