Rectifying the Optical-Field-Induced Current in Dielectrics: Petahertz Diode
Rectifying the Optical-Field-Induced Current in Dielectrics: Petahertz Diode
Citing Articles
2017 {1}
· Xiaoqin Zhang, Feng Wang, Lan Jiang, and Yugui Yao, "Manipulation of the dielectric properties of diamond by an ultrashort laser pulse", Phys. Rev. B 95, 184301 (2017).
2018 {6}
· Youngjae Kim and J. D. Lee, "Manipulating light-wave-controlled charges into a spin-asymmetric flow: Petahertz frequency control of spins", Phys. Rev. B 97, 041105(R) (2018).
· Stanislav Yu. Kruchinin, Ferenc Krausz, and Vladislav S. Yakovlev, "Colloquium:Strong-field Phenomena in Periodic Systems", Rev. Mod. Phys. 90, 021002 (2018). See Also: arXiv:1712.05685.
· Ye-Xiong Zeng, Tesfay Gebremariam, Ming-Song Ding, and Chong Li, "Quantum optical diode based on Lyapunov control in a superconducting system", J. Opt. Soc. Am. B 35, 2234-2341 (2018).
· J. D. Lee, Youngjae Kim, and Chil-Min Kim, "Model for petahertz optical memory based on a manipulation of the optical-field-induced current in dielectrics", New J. Phys. 20, 093029 (2018).
· Youngjae Kim and J. D. Lee, "Subfemtosecond charge driving with correlation-assisted band engineering in a wide-gap semiconductor", Phys. Rev. B 98, 195135 (2018).
· Xiaoshuang Kong, Feng Wang, Xiaoqin Zhang, Zehui Liu, and Xiaoli Wang, "Dielectric properties of cubic boron nitride modulated by an ultrashort laser pulse", Phys. Rev. A 98, 053439 (2018).
2019 {3}
· Xiaoqin Zhang, Feng Wang, Xiaoli Wang, and Lan Jiang, "Controlling anisotropy of dielectrics by an ultrashort double-pulse laser", J. Phys. D: Appl. Phys. 52, 035106 (2019).
· Shunsuke A. Sato, "Photovoltaic Effect from the Viewpoint of Time-reversal Symmetry", J. Phys. Soc. Jpn. 88, 115003 (2019). See Also: arXiv:1908.05492.
· J. Schoetz, Z. Wang, E. Pisanty, M. Lewenstein, M. F. Kling, and M. F. Ciappina, "Perspective on Petahertz Electronics and Attosecond Nanoscopy", ACS Photonics 6, 3057-3069 (2019).
2020 {6}
· Xiaoshuang Kong, Feng Wang, Xiaoqin Zhang, Zehui Liu, and Suna Pang, "Controlling dielectric properties of cBN by an ultrashort double-pulse light", Phys. Lett. A 384, 126125 (2020).
· Meenkyo Seo, Tsendsuren Khurelbaatar, Sambit Mitra, Matthias Kling, and Dong-Eon Kim, "High-contrast, intense single-cycle pulses from an all thin-solid-plate setup", Opt. Lett. 45, 367-370 (2020).
· Shawn Sederberg, Dmitry Zimin, Sabine Keiber, Florian Siegrist, Michael S. Wismer, Vladislav S. Yakovlev, Isabella Floss, Christoph Lemell, Joachim Burgdörfer, Martin Schultze, Ferenc Krausz, and Nicholas Karpowicz, "Attosecond optoelectronic field measurement in solids", Nat. Commun. 11, 430 (2020).
· Zehui Liu, Feng Wang, Xiaoshuang Kong, and Xiaoqin Zhang, "Manipulation of the dielectric properties of narrow-band gap material by an ultrashort laser pulse", Comput. Mater. Sci. 177, 109602 (2020).
· Yujia Yang, Marco Turchetti, Praful Vasireddy, William P. Putnam, Oliver Karnbach, Alberto Nardi, Franz X. Kärtner, Karl K. Berggren, and Phillip D. Keathley, "Light phase detection with on-chip petahertz electronic networks", Nat. Commun. 11, 3407 (2020). See also: arXiv:1912.17130 (2019).
· Ojoon Kwon and D. Kim, "Effect of crystal anisotropy on light-field-driven currents in dielectric crystal", J. Opt. Soc. Am. B 37, 3429-3434 (2020).
2022 {1}
· Dario Cattozzo Mor, Yujia Yang, Felix Ritzkowsky, Franz X. Kartner, Karl K. Berggren, Neetesh Kumar Singh, and Phillip D. Keathley, "PHz Electronic Device Design and Simulation for Waveguide-Integrated Carrier-Envelope Phase Detection", J. Light. Technol. 40, 3823-3831 (2022). See also: arXiv:2109.12558.
2024 {2}
· Wenwen Mao, Angel Rubio, and Shunsuke A. Sato, "Nonlinear Current Injection in Hexagonal Boron Nitride using Linearly Polarized Light in a Deeply Off-Resonant Regime", Adv. Opt. Mater. 12, 2400651 (2024).
· Christian Heide, Phillip D. Keathley, and Matthias F. Kling, "Petahertz electronics", Nat. Rev. Phys. 6, 648-662 (2024).
2025 {1}
· Shunsuke A. Sato, Hannes Hübener, Umberto De Giovannini, and Angel Rubio, "Technical review: Time-dependent density functional theory for attosecond physics ranging from gas-phase to solids", npj Comput. Mater. 11, 233 (2025).