4.8 Article

Terahertz waveform synthesis in integrated thin-film lithium niobate platform

相关参考文献

注意:仅列出部分参考文献,下载原文获取全部文献信息。
Review Engineering, Electrical & Electronic

A Review of the Concept, Applications and Implementation Issues of Terahertz Spectral Imaging Technique

Aparajita Bandyopadhyay et al.

Summary: This review explores the fundamental physics, important applications, experimental implementations, and image analyses issues of the spectral imaging technique in the THz band. It also discusses the challenges related to spectral noise, long image acquisition times, and limited portability and customizability of systems based on this technique in various real-world scenarios.

IETE TECHNICAL REVIEW (2022)

Article Optics

Electrically pumped laser transmitter integrated on thin-film lithium niobate

Amirhassan Shams-Ansari et al.

Summary: Integrated thin-film lithium niobate (TFLN) photonics is a promising platform for high-performance chip-scale optical systems. By integrating high-power lasers and modulators, we have achieved a high-power transmitter on the TFLN chip.

OPTICA (2022)

Article Optics

Near-optimal intense and powerful terahertz source by optical rectification in lithium niobate crystal

L. Guiramand et al.

Summary: By utilizing a novel pulse compression technique and a 400 µJ ytterbium laser, we have achieved a state-of-the-art terahertz (THz) source at room temperature with a record efficiency of 1.3%, generating an average power of 74 mW and a focus of 400 kV/cm. This source exhibits unmatched characteristics in generating intense and powerful THz pulses simultaneously, and it remains highly scalable compared to existing Ti:sapphire-based THz sources pumped in the millijoule range.

PHOTONICS RESEARCH (2022)

Article Optics

Topologically tuned terahertz confinement in a nonlinear photonic chip

Jiayi Wang et al.

Summary: In this study, we demonstrated nonlinear generation and localization of terahertz waves through topological control in experiments. The results showed that controlling terahertz waves in chip-scale devices remains a challenge.

LIGHT-SCIENCE & APPLICATIONS (2022)

Article Optics

Reduced material loss in thin-film lithium niobate waveguides

Amirhassan Shams-Ansari et al.

Summary: Thin-film lithium niobate has the potential for various scalable applications, but improving optical losses is crucial for high-performance classical and quantum devices.

APL PHOTONICS (2022)

Review Engineering, Electrical & Electronic

Reviewing the Scope of THz Communication and a Technology Roadmap for Implementation

Md Hafizur Rahaman et al.

Summary: This review explores the potential of terahertz frequencies as a replacement for conventional mm-wave technology, providing detailed analysis from experimental validation to link budget estimation and technology recommendations. Despite challenges, the terahertz range shows greater advantages in short-range to very-short-range communication.

IETE TECHNICAL REVIEW (2021)

Review Optics

High Field Single- to Few-Cycle THz Generation with Lithium Niobate

Xing Zhu et al.

Summary: This review focuses on single- to few-cycle terahertz generation in lithium niobate (LN), including the basic principles, techniques, latest developments, and limitations. Emphasis is placed on the tilted pulse front (TPF) technique, which has been shown to improve THz generation efficiency but still has many limitations. Different geometries used to produce continuous and discrete TPF are systematically discussed, and the advantages and limitations of current techniques as well as future trends are summarized.

PHOTONICS (2021)

Article Optics

1.4-mJ High Energy Terahertz Radiation from Lithium Niobates

Baolong Zhang et al.

Summary: By cooling the crystals, tailoring the pump laser spectra, chirping the pump pulses, and magnifying the laser energies, researchers successfully achieved 1.4-mJ THz pulses in lithium niobates with an energy conversion efficiency of 0.7%. The high-energy THz source is suitable for electron acceleration and extreme THz science.

LASER & PHOTONICS REVIEWS (2021)

Article Engineering, Electrical & Electronic

A 300-GHz Transmitter Front End With-4.1-dBm Peak Output Power for Sub-THz Communication Using 130-nm SiGe BiCMOS Technology

Jiayang Yu et al.

Summary: This article presents a compact 300-GHz transmitter front end manufactured in a 130-nm SiGe BiCMOS process, which includes a 240-GHz amplifier multiplier chain and an improved 300-GHz Gilbert mixer. A self-shielded Marchand balun (SSMB) is proposed to enhance the coupling coefficient by utilizing a novel multilayer metal topology with self-shielded coupling (SSC). The performance of the transmitter chip is comparable to other state-of-the-art silicon-based transmitters near 300 GHz.

IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES (2021)

Article Multidisciplinary Sciences

Terahertz pulse shaping using diffractive surfaces

Muhammed Veli et al.

Summary: Recent advances in deep learning have provided non-intuitive solutions to inverse problems in optics. Diffractive networks merge wave-optics with deep learning to design task-specific elements for all-optically performing tasks like object classification. The authors present a diffractive network used to shape broadband pulses into desired optical waveforms, demonstrating direct pulse shaping in the terahertz spectrum.

NATURE COMMUNICATIONS (2021)

Review Optics

Integrated photonics on thin-film lithium niobate

Di Zhu et al.

Summary: Lithium niobate is a versatile material that plays a significant role in daily life, particularly in the fields of optical communications and photonics. Thin-film lithium niobate integrated photonics is currently undergoing a revolution, enabling high-performance nanophotonic components such as optical modulators and nonlinear wavelength converters.

ADVANCES IN OPTICS AND PHOTONICS (2021)

Article Multidisciplinary Sciences

Lightwave-driven scanning tunnelling spectroscopy of atomically precise graphene nanoribbons

S. E. Ammerman et al.

Summary: The authors utilized lightwave-driven scanning tunnelling microscopy to investigate localized wavefunctions of graphene nanoribbons with atomic resolution, revealing their highly localized nature. This technique shows great promise for the design and measurement of atomic precision electronic devices.

NATURE COMMUNICATIONS (2021)

Article Optics

Optically referenced 300 GHz millimetre-wave oscillator

Tomohiro Tetsumoto et al.

Summary: The integration of low-noise stimulated Brillouin scattering process, dissipative Kerr soliton comb, and optical-to-electrical conversion has led to the generation of a 300 GHz signal with a phase noise of -100 dBc Hz(-1). The optical frequency division via optical frequency combs has revolutionized microwave metrology and shows great potential for application in the millimeter-wave and terahertz-wave domains. Disipative Kerr solitons in integrated photonic chips are emerging as a leading technology with ultrahigh repetition rates in the millimeter-wave and terahertz-wave fields.

NATURE PHOTONICS (2021)

Article Optics

Efficient terahertz generation scheme in a thin-film lithium niobate-silicon hybrid platform

Jingwei Yang et al.

Summary: A hybrid lithium niobate/silicon waveguide scheme is proposed to achieve an efficient THz source with high generation efficiency and fabrication tolerance, which could be a cost-effective solution for future spectroscopy, communications, and remote sensing systems.

OPTICS EXPRESS (2021)

Article Optics

Modulating the polarization of broadband terahertz pulses from a spintronic emitter at rates up to 10 kHz

Oliver Gueckstock et al.

Summary: In this study, reliable modulation of terahertz electromagnetic waveforms was achieved by rapidly modulating the direction of the electric field of linearly polarized terahertz electromagnetic pulses using time-dependent magnetic fields. The approach demonstrated high contrast polarity modulation at 10 kHz rates and the ability to modulate the terahertz field direction between specific angles at kilohertz rates, making spintronic terahertz emitters a promising source for various applications.

OPTICA (2021)

Article Optics

High-power portable terahertz laser systems

Ali Khalatpour et al.

Summary: Terahertz frequencies are underutilized due to the lack of powerful and compact sources, but the invention of THz quantum cascade lasers has helped bridge this gap and expand potential applications. However, the technology is still limited by demanding cooling requirements, restricting its practical use outside of laboratory settings.

NATURE PHOTONICS (2021)

Article Multidisciplinary Sciences

Sub-cycle atomic-scale forces coherently control a single-molecule switch

Dominik Peller et al.

NATURE (2020)

Article Physics, Multidisciplinary

Highly scalable multicycle THz production with a homemade periodically poled macrocrystal

Francois Lemery et al.

COMMUNICATIONS PHYSICS (2020)

Article Engineering, Electrical & Electronic

Terahertz Band: The Last Piece of RF Spectrum Puzzle for Communication Systems

Hadeel Elayan et al.

IEEE OPEN JOURNAL OF THE COMMUNICATIONS SOCIETY (2020)

Article Physics, Applied

High-resolution terahertz spectroscopy with quantum-cascade lasers

H. -W. Hubers et al.

JOURNAL OF APPLIED PHYSICS (2019)

Article Multidisciplinary Sciences

Electric field correlation measurements on the electromagnetic vacuum state

Ileana-Cristina Benea-Chelmus et al.

NATURE (2019)

Article Multidisciplinary Sciences

Temporal and spectral fingerprints of ultrafast all-coherent spin switching

S. Schlauderer et al.

NATURE (2019)

Article Physics, Applied

Thermoelectrically cooled THz quantum cascade laser operating up to 210K

L. Bosco et al.

APPLIED PHYSICS LETTERS (2019)

Article Multidisciplinary Sciences

Spectral phase control of interfering chirped pulses for high-energy narrowband terahertz generation

Spencer W. Jolly et al.

NATURE COMMUNICATIONS (2019)

Article Optics

Terahertz wave generation using a soliton microcomb

Shuangyou Zhang et al.

OPTICS EXPRESS (2019)

Article Multidisciplinary Sciences

Compact and ultra-efficient broadband plasmonic terahertz field detector

Yannick Salamin et al.

NATURE COMMUNICATIONS (2019)

Review Physics, Multidisciplinary

Antiferromagnetic opto-spintronics

P. Nemec et al.

NATURE PHYSICS (2018)

Review Optics

Twenty years of terahertz imaging [Invited]

Daniel M. Mittleman

OPTICS EXPRESS (2018)

Article Multidisciplinary Sciences

Security and eavesdropping in terahertz wireless links

Jianjun Ma et al.

NATURE (2018)

Article Optics

Direct temporal shaping of terahertz light pulses

Lauren Gingras et al.

OPTICA (2017)

Article Multidisciplinary Sciences

Direct sampling of electric-field vacuum fluctuations

C. Riek et al.

SCIENCE (2015)

Proceedings Paper Physics, Applied

Tailoring of High-Field Multi-THz Waveforms with Sub-cycle Precision

B. Mayer et al.

ULTRAFAST PHENOMENA XIX (2015)

Article Optics

Quarter-cycle engineering of terahertz field waveforms

L. Shu et al.

LASER PHYSICS LETTERS (2014)

Article Optics

An ultrafast terahertz scanning tunnelling microscope

Tyler L. Cocker et al.

NATURE PHOTONICS (2013)

Article Optics

Terahertz polarization pulse shaping with arbitrary field control

Masaaki Sato et al.

NATURE PHOTONICS (2013)

Article Optics

Generation of sub-mJ terahertz pulses by optical rectification

J. A. Fülöp et al.

OPTICS LETTERS (2012)

Article Engineering, Electrical & Electronic

THz spectroscopy of superconductors

Martin Dressel et al.

IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS (2008)

Article Physics, Applied

Generation of arbitrary terahertz wave forms in fanned-out periodically poled lithium niobate

J. R. Danielson et al.

APPLIED PHYSICS LETTERS (2006)

Article Optics

Terahertz pulse shaping and optimal waveform generation in poled ferroelectric crystals

YS Lee et al.

JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS (2002)

Article Physics, Applied

Tunable narrow-band terahertz generation from periodically poled lithium niobate

YS Lee et al.

APPLIED PHYSICS LETTERS (2001)