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The ternary semiconductors NiZrSn and CoZrBi with C1_b crystal structure are introduced by calculating their basic structural, electronic and phononic properties using density functional theory. Both the gradient-corrected PBE functional…

Materials Science · Physics 2019-09-27 Gregor Fiedler , Peter Kratzer

The scanning mid-IR-laser microscopy was previously demonstrated as an effective tool for characterization of different semiconductor crystals. Now the technique has been successfully applied for the investigation of CZ Si$_x$Ge$_{1-x}$---a…

Materials Science · Physics 2013-10-25 V. P. Kalinushkin , O. V. Astafiev , V. A. Yuryev

We present a numerical study on plasma generation of THz radiation utilizing multiple light pulses of various wavelengths in an optical scheme that is readily achievable in a tabletop environment. To achieve coherent THz emission it is…

Optics · Physics 2023-04-07 Clayton D. Moss , Shayne A. Sorenson , Jeremy A. Johnson

A promising route for the development of opto-elelctronic technology is to use terahertz radiation to modulate the optical properties of semiconductors. Here we demonstrate the dynamical control of photoluminescence (PL) emission in…

Selenium, the world's oldest photovoltaic material, has experienced a renaissance in research over the past decade, with certified solar cell efficiencies climbing from the historical record of 5% to breaking the 10% barrier. Its wide…

Materials Science · Physics 2026-04-14 Rasmus S. Nielsen

We compare the observed strong saturation of the free carrier absorption in n-type semiconductors at 300 K in the terahertz frequency range when single-cycle pulses with intensities up to 150 MW/cm2 are used. In the case of germanium, a…

Materials Science · Physics 2015-05-13 Janos Hebling , Matthias C. Hoffmann , Harold Y. Hwang , Ka-Lo Yeh , Keith A. Nelson

Terahertz lies at the juncture between RF and optical electromagnetism, serving as a transition from mm-Wave to infrared photonics. Terahertz technology has been used for industrial quality control, security imaging, and high-speed…

Mesoscale and Nanoscale Physics · Physics 2024-07-29 Boxun Yan , Bundel Pooja , Chi-Hou Chan , Mau-Chung Frank Chang

Boosted by the relentless increase of available computational resources, high-throughput calculations based on first principles methods have become a powerful tool to screen a huge range of materials. The backbone of these studies are…

Materials Science · Physics 2022-03-23 Holger-Dietrich Saßnick , Caterina Cocchi

Coherent light sources emitting in the terahertz range are highly sought after for fundamental research and applications. THz lasers rely on achieving population inversion. We demonstrate the generation of THz radiation using…

We demonstrate high-energy terahertz generation from a large-aperture (75 mm diameter) lithium niobate wafer by using a femtosecond laser with energy up to 2 J. This scheme utilizes optical rectification in a bulk lithium niobate crystal,…

Optics · Physics 2020-01-08 Dogeun Jang , Chul Kang , Seong Ku Lee , Jae Hee Sung , Chul-sik Kee , Ki-yong Kim

Selenium is experiencing renewed interest as a elemental semiconductor for a range of optoelectronic and energy applications due to its irresistibly simple composition and favorable wide bandgap. However, its high volatility and low…

We compute from first principles the infrared dispersion of the nonlinear susceptibility $\chi^{(2)}$ in zincblende semiconductors. At terahertz frequencies the nonlinear susceptibility depends not only on the purely electronic response…

Materials Science · Physics 2009-12-17 Eric Roman , Jonathan R. Yates , Marek Veithen , David Vanderbilt , Ivo Souza

This monograph presents the results of experimental and theoretical studies of binary and ternary crystalline and glassy silicon tellurides. It provides a detailed description of the methods for synthesizing and growing bulk and…

Materials Science · Physics 2025-11-07 Dmytro Bletskan

Indium-doped semiconductor crystals CdZnTeSe with several different compositions of raw materials were grown via the vertical Bridgman method under high-pressure argon. For the first time, these crystals were obtained via a combined method…

Materials Science · Physics 2025-10-21 S. V. Naydenov , O. K. Kapustnyk , I. M. Pritula , D. S. Sofronov , I. S. Terzin , N. O. Kovalenko

We analytically show how a superposition of beamlets produces terahertz radiation with greater spatial homogeneity and efficiency compared to tilted-pulse-fronts generated by diffraction gratings. The advantages are particularly notable for…

Compared with adjacent microwaves and infrared frequencies, terahertz (THz) frequency offers numerous advantages for imaging applications. The unique THz spectral signatures of chemicals allow the development of THz imaging systems for…

Superconductivity · Physics 2026-04-08 Manabu Tsujimoto , Kaveh Delfanazari , Takanari Kashiwagi , Toshiaki Hattori , Kazuo Kadowaki

Terahertz (THz) nonlinear optics offer powerful tools to investigate and manipulate electronic dynamics in condensed matter. Confining high-peak-power THz pulses within near field can effectively generates extremely localized…

Spintronic terahertz (THz) emitters have established themselves as among the most practical broadband THz sources available, yet their performance remains fundamentally limited by the spin Hall conductivity of the nonmagnetic conversion…

Intense terahertz (THz) radiation in free space offers multifaceted capabilities for accelerating electron, understanding the mesoscale architecture in (bio)materials, elementary excitation and so on. Recently popularized spintronic THz…

Trigonal selenium and tellurium crystalize in helical chain-like structures and thus possess interesting properties such as current-induced spin polarization, gyrotropic effects and nonlinear optical responses. By performing systematic ab…

Computational Physics · Physics 2019-07-17 Meijuan Cheng , Shunqing Wu , Zi-Zhong Zhu , Guang-Yu Guo