Optical pulses at THz and mid-infrared frequencies tuned to specific vibrational resonances modulate the lattice along chosen normal mode coordinates. In this way, solids can be switched between competing electronic phases and new states are created. Here, we use vibrational modulation to make electronic interactions (Hubbard-U) in Mott-insulator time dependent. Mid-infrared optical pulses excite localized molecular vibrations in ET-F(2)TCNQ, a prototypical one-dimensional Mott-insulator. A broadband ultrafast probe interrogates the resulting optical spectrum between THz and visible frequencies. A red-shifted charge-transfer resonance is observed, consistent with a time-averaged reduction of the electronic correlation strength U. Secondly, ...
Competition between electron localization and delocalization in Mott insulators underpins the physic...
By using nearly-single-cycle optical pulses in the near infrared, we measure the time-dependent opti...
Competition between electron localization and delocalization in Mott insulators underpins the physic...
Optical pulses at THz and mid-infrared frequencies tuned to specific vibrational resonances modulate...
Optical pulses at THz and mid-infrared frequencies tuned to specific vibrational resonances modulate...
Optical pulses at THz and mid-infrared frequencies tuned to specific vibrational resonances modulate...
Optical pulses at THz and mid-infrared frequencies tuned to specific vibrational resonances modulate...
Optical pulses at THz and mid-infrared frequencies tuned to specific vibrational resonances modulate...
Optical pulses at THz and mid-infrared frequencies tuned to specific vibrational resonances modulate...
We use midinfrared pulses with stable carrier-envelope phase offset to drive molecular vibrations in...
We use midinfrared pulses with stable carrier-envelope phase offset to drive molecular vibrations in...
We use midinfrared pulses with stable carrier-envelope phase offset to drive molecular vibrations in...
We use midinfrared pulses with stable carrier-envelope phase offset to drive molecular vibrations in...
Competition between electron localization and delocalization in Mott insulators underpins the physic...
Competition between electron localization and delocalization in Mott insulators underpins the physic...
Competition between electron localization and delocalization in Mott insulators underpins the physic...
By using nearly-single-cycle optical pulses in the near infrared, we measure the time-dependent opti...
Competition between electron localization and delocalization in Mott insulators underpins the physic...
Optical pulses at THz and mid-infrared frequencies tuned to specific vibrational resonances modulate...
Optical pulses at THz and mid-infrared frequencies tuned to specific vibrational resonances modulate...
Optical pulses at THz and mid-infrared frequencies tuned to specific vibrational resonances modulate...
Optical pulses at THz and mid-infrared frequencies tuned to specific vibrational resonances modulate...
Optical pulses at THz and mid-infrared frequencies tuned to specific vibrational resonances modulate...
Optical pulses at THz and mid-infrared frequencies tuned to specific vibrational resonances modulate...
We use midinfrared pulses with stable carrier-envelope phase offset to drive molecular vibrations in...
We use midinfrared pulses with stable carrier-envelope phase offset to drive molecular vibrations in...
We use midinfrared pulses with stable carrier-envelope phase offset to drive molecular vibrations in...
We use midinfrared pulses with stable carrier-envelope phase offset to drive molecular vibrations in...
Competition between electron localization and delocalization in Mott insulators underpins the physic...
Competition between electron localization and delocalization in Mott insulators underpins the physic...
Competition between electron localization and delocalization in Mott insulators underpins the physic...
By using nearly-single-cycle optical pulses in the near infrared, we measure the time-dependent opti...
Competition between electron localization and delocalization in Mott insulators underpins the physic...