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We report Auger recombination rates for wurtzite InGaN calculated from first principles density-functional and many-body-perturbation theory. Two different mechanisms are examined -- inter- and intra-band recombination -- that affect…

Materials Science · Physics 2015-05-13 Kris T. Delaney , Patrick Rinke , Chris G. Van de Walle

We present a consistent first-principles methodology to study both direct and phonon-assisted Auger-Meitner recombination (AMR) in indirect-gap semiconductors that we apply to investigate the microscopic origin of AMR processes in silicon.…

Materials Science · Physics 2023-08-31 Kyle Bushick , Emmanouil Kioupakis

The principal mechanisms of Auger recombination of nonequilibrium carriers in semiconductor heterostructures with quantum wells are investigated. It is shown for the first time that there exist three fundamentally different Auger…

Materials Science · Physics 2009-10-31 Anatoli S. Polkovnikov , Georgy G. Zegrya

In quantum dots (QDs) the Auger recombination is a non-radiative process, where the electron-hole recombination energy is transferred to an additional carrier. It has been studied mostly in colloidal QDs, where the Auger recombination time…

Mesoscale and Nanoscale Physics · Physics 2019-07-03 Annika Kurzmann , Arne Ludwig , Andreas D. Wieck , Axel Lorke , Martin Geller

The Auger recombination in bulk semiconductors can depopulate the charge carriers in a non-radiative way, which, fortunately, only has detrimental impact on optoelectronic device performance under the condition of high carrier density…

Chemical Physics · Physics 2020-02-07 Hongyan Liao , Yunyan Fan , Yumei Lin , Kang Wang , Renfu Li , Xueyuan Chen , Kelvin H. L. Zhang , Ye Yang

We propose a novel phonon assisted Auger process unique to the electronic band structure of monolayer transition metal dichalcogenides (TMDCs), which dominates the radiative recombination of ground state excitons in Tungsten based TMDCs.…

Mesoscale and Nanoscale Physics · Physics 2016-09-12 Mark Danovich , Viktor Zólyomi , Igor L. Aleiner , Vladimir I. Fal'ko

Spectroscopic studies of semiconductor quantum dots (SQDs) addressing the problem of non-radiative carrier losses is vital for the improvement in the efficiency of various light-emitting devices. Various designs of SQDs emitter like doping,…

Mesoscale and Nanoscale Physics · Physics 2020-08-07 Sabina Gurung , Asha Singh , J. Jayabalan

Auger recombination is a non-radiative process, where the recombination energy of an electron-hole pair is transferred to a third charge carrier. It is a common effect in colloidal quantum dots that quenches the radiative emission with an…

Mesoscale and Nanoscale Physics · Physics 2020-04-22 Pia Lochner , Annika Kurzmann , Jens Kerski , Philipp Stegmann , Jürgen König , Andreas D. Wieck , Arne Ludwig , Axel Lorke , Martin Geller

Trap-assisted nonradiative recombination is known to limit the efficiency of optoelectronic devices, but the conventional multi-phonon emission (MPE) process fails to explain the observed loss in wide-band-gap materials. Here we highlight…

Materials Science · Physics 2023-08-16 Fangzhou Zhao , Mark E. Turiansky , Audrius Alkauskas , Chris G. Van de Walle

Auger recombination in semiconductors is a many-body phenomenon in which recombination of electrons and holes is accompanied by excitation of other charge carriers. Being nonradiative, it is detrimental to light emission. The excess energy…

Auger scattering channels are of fundamental importance to describe and understand the non-equilibrium charge carrier dynamics in graphene. While impact excitation increases the number of carriers in the conduction band and has been…

In semiconductor nanostructures nonradiative Auger recombination is enhanced by the presence of boundaries which relax the momentum conservation and thereby removes the threshold reduction for these processes. We propose a method to…

Mesoscale and Nanoscale Physics · Physics 2016-03-11 Alexander Khaetskii , Igor Žutić

A growing interest in colloidal quantum dot (QD) based light-emitting diodes (QD-LEDs) has been motivated by the exceptional color purity and spectral tunability of QD emission as well as the amenability of QD materials to highly scalable…

Charge transfer between photoexcited quantum dots and molecular acceptors is one of the key limiting processes in most applications of colloidal nanostructures, most prominently in photovoltaics. An atomistic detailed description of this…

The quantum efficiency of AlGaN ultraviolet light-emitting diodes (LEDs) declines (droops) at increasing operating powers due to Auger-Meitner recombination (AMR). Using first-principles density-functional theory, we show that indirect AMR…

Carrier lifetime measurements reveal that, contrary to common expectations, the high-current non-radiative recombination (droop) in III-Nitride light emitters is comprised of two contributions which scale with the cube of the carrier…

Applied Physics · Physics 2019-04-09 Aurelien David , Nathan G. Young , Christophe A. Hurni , Michael D. Craven

Influence of electron-electron relaxation processes on Auger recombination rate in direct band semiconductors is investigated. Comparison between carrier-carrier and carrier-phonon relaxation processes is provided. It is shown that…

Materials Science · Physics 2007-05-23 Anatoli Polkovnikov , Georgy Zegrya

We present first-principles quantum transport simulations of single-walled carbon nanotubes based on the NEGF method and including carrier-carrier interactions within the self-consistent GW approximation. Motivated by the characteristic…

Mesoscale and Nanoscale Physics · Physics 2023-07-12 Leonard Deuschle , Jonathan Backman , Mathieu Luisier , Jiang Cao

Fully microscopic many-body models based on inputs from first principle density functional theory are used to calculate the carrier losses due to radiative- and Auger-recombinations in bulk tellurium. It is shown that Auger processes…

Materials Science · Physics 2022-11-23 Jörg Hader , Sven C. Liebscher , Jerome V. Moloney , Stephan W. Koch

The performance of modern light-emitting technologies, from lasers to LEDs, is limited by nonradiative losses, with Auger recombination being the dominant channel at device-relevant carrier densities. Reliable modeling of this process is…

Materials Science · Physics 2025-12-11 Utkarsh Singh , Sergei I. Simak
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