English
Related papers

Related papers: Forcibly driven coherent soft phonons in GeTe with…

200 papers

Time-resolved spectroscopies using intense THz pulses appear as a promising tool to address collective electronic excitations in condensed matter. In particular recent experiments showed the possibility to selectively excite collective…

Strongly Correlated Electrons · Physics 2019-11-18 Mattia Udina , Tommaso Cea , Lara Benfatto

Information technology demands high-speed optoelectronic devices, but going beyond the one terahertz (THz) barrier is challenging due to the difficulties associated with generating, detecting, and processing high-frequency signals. Here, we…

Mesoscale and Nanoscale Physics · Physics 2021-11-29 Ziqi Li , Bo Peng , Miao-Ling Lin , Yu-Chen Leng , Bin Zhang , Chi Pang , Ping-Heng Tan , Bartomeu Monserrat , Feng Chen

In stimulated Raman scattering, two incident optical waves induce a force oscillating at the difference of the two light frequencies. This process has enabled important applications such as the excitation and coherent control of phonons and…

Materials Science · Physics 2017-09-27 Sebastian Maehrlein , Alexander Paarmann , Martin Wolf , Tobias Kampfrath

Driving coherent lattice motion with THz pulses has emerged as a novel pathway for achieving dynamic stabilization of exotic phases that are inaccessible in equilibrium quantum materials. In this work, we present a previously unexplored…

PbTe crystals have a soft transverse optical phonon mode in the terahertz frequency range, which is known to efficiently decay into heat-carrying acoustic phonons, resulting in anomalously low thermal conductivity. Here, we studied this…

Laser-driven coherent phonons can act as modulated strain fields and modify the adiabatic ground state topology of quantum materials. Here we use time-dependent first-principles and effective model calculations to simulate the effect of the…

Graphene, a unique two-dimensional material of carbon in a honeycomb lattice, has brought remarkable breakthroughs across the domains of electronics, mechanics, and thermal transport, driven by the quasiparticle Dirac fermions obeying a…

We study the generation of coherent phonons in a superconductor by ultrafast optical pump pulses. The nonequilibrium dynamics of the coupled Bogoliubov quasiparticle-phonon system after excitation with the pump pulse is analyzed by means of…

Superconductivity · Physics 2011-12-14 Andreas P. Schnyder , Dirk Manske , Adolfo Avella

We tailor the shape and phase of the pump pulse spectrum in order to study the coherent lattice dynamics in tellurium. Employing the coherent control via splitting the pump pulse into a two-pulse sequence, we show that the oscillations due…

Materials Science · Physics 2010-11-10 O V Misochko , M V Lebedev , H Schaefer , T Dekorsy

Direct manipulation of the atomic lattice using intense long-wavelength laser pulses has become a viable approach to create new states of matter in complex materials. Conventionally, a high frequency vibrational mode is driven resonantly by…

A coherent THz optical lattice mode is triggered by femtosecond laser pulses in the antiferromagnetic van der Waals semiconductor FePS$_3$. The 380 nm thick exfoliated flake was placed on a substrate and laser-driven lattice and spin…

Nonlinear processes involving frequency-mixing of light fields set the basis for ultrafast coherent spectroscopy of collective modes in solids. In certain semimetals and semiconductors, generation of coherent phonon modes can occur by a…

Using sub-picosecond optical pump-probe techniques, coherent zone-folded longitudinal acoustic phonons (ZFLAPs) were generated and controlled in an InGaN multiple quantum well structure. A one-pump, one-probe differential transmission…

Mesoscale and Nanoscale Physics · Physics 2007-05-23 Umit Ozgur , Chang-Won Lee , Henry O. Everitt

Time-resolved two color pump-probe polarization spectroscopy was performed at room temperature on SrTiO3 films grown directly on Si with film thickness varying from 2 nm to 7.8 nm. The E soft mode with a characteristic frequency of 0.2 THz…

Materials Science · Physics 2015-03-17 Cheng Cen , Maitri P. Warusawithana , Darrell G. Schlom , Jeremy Levy

Advanced magnetic recording paradigms typically use large temperature changes to drive switching which is detrimental to device longevity, hence finding non-thermal routes is crucial for future applications. By employing atomistic…

Transient responses of the electronic excitation and coherent soft phonon are investigated both above and below the ferroelectric phase transition temperature T$_{c}$ in Pb$_{1-x}$Ge$_{x}$Te by using an optical pump-probe technique. The…

Materials Science · Physics 2007-05-23 Rong Lu , Muneaki Hase , Masahiro Kitajima , Shinichi Nakashima , Shunji Sugai

The advent of high-intensity ultrafast laser pulses has opened new opportunities for controlling and designing quantum materials. In particular, terahertz (THz) pulses can resonantly drive optical phonon modes, enabling dynamic manipulation…

Quantum Physics · Physics 2025-12-22 Yulong Qiao , Richard. Matthias Geilhufe

We use ultrafast optical spectroscopy to investigate the electronic and lattice dynamics of the charge-density wave (CDW) material 1$T$-TiSe$_2$ across various temperatures and pump fluences. We reveal a close relationship between the…

Strongly Correlated Electrons · Physics 2026-04-28 Xue-Qing Ye , Hao Liu , Qi-Yi Wu , Chen Zhang , Xiao-Fang Tang , Bo Chen , Chuan-Cun Shu , Hai-Yun Liu , Yu-Xia Duan , Peter M. Oppeneer , Jian-Qiao Meng

We explore pump-probe high harmonic generation (HHG) from monolayer hexagonal-Boron-Nitride, where a terahertz pump excites coherent optical phonons that are subsequently probed by an intense infrared pulse that drives HHG. We find, through…

Materials Science · Physics 2022-06-22 Ofer Neufeld , Jin Zhang , Umberto De Giovannini , Hannes Hubener , Angel Rubio

We show how amplitude modulated, coherent high-frequency drives can be used to access otherwise difficult to reach collective resonances and off-resonantly induce parametric instabilities. In particular, we demonstrate that difficult to…

Mesoscale and Nanoscale Physics · Physics 2025-07-14 Egor I. Kiselev , Jonas F. Karcher , Mark S. Rudner , Rembert Duine , Netanel H. Lindner
‹ Prev 1 2 3 10 Next ›