Terahertz Imaging and Nonlinear Spectroscopy of Semiconductors Using Plasmonic Devices

Terahertz Imaging and Nonlinear Spectroscopy of Semiconductors Using Plasmonic Devices
Author: Zachary James Thompson
Publisher:
Total Pages: 128
Release: 2015
Genre: Gallium arsenide semiconductors
ISBN:

In this dissertation, a series of studies in the field of terahertz (THz) science are presented, specifically using nonlinear THz spectroscopy. We exploit huge field enhancement and subwavelength confinement in plasmonic structures. There are three distinct projects which will be discussed: nonlinear THz spectroscopy using plasmonic induced transparency (PIT), THz-triggered insulator-metal transition (IMT) in nanoantenna patterned vanadium dioxide (VO2) films, and fabrication of sub-diffraction limit imaging bulls-eye structures. We used PIT structures to observe the high- field carrier dynamics in semiconductors, specifically in intrinsic, high resistivity silicon (high-rho Si) and intrinsic gallium arsenide (GaAs). The PIT structures rely on the coupling of a "bright mode" in a central half-wave dipole antenna to the "dark mode" of the adjacent split-ring resonators. We employed these structures because of their sensitivity to carrier dynamics due to the sharp resonance of the "dark mode." We observed the response of the PIT oscillation to both low and high THz fields in the presence of an optical pump. Increasing the optical pump power, and therefore the number of carriers, resulted in the damping of the oscillation. With increasing THz field strength, we observed a field induced transparency from the intervalley scattering of the excited carriers and demonstrated THz control of the PIT oscillation. By changing the delay time between the THz and optical pulses, we demonstrated pulse shaping of the PIT waveforms. We demonstrated the THz-triggered insulator-metal transition (IMT) in nanoantenna patterned vanadium dioxide (VO2) films. Vanadium dioxide is a promising material for electronic and photonic applications due to its IMT transition lying near room temperature. We observed that the phase transition is activated on the sub-cycle time scale where strong THz fields drive the electron distribution far from equilibrium. We also observed a lowering the transition temperature of the IMT phase transition for both heating and cooling cycles in nanoslot antenna VO2 films with increasing THz fields and also a narrowing in the width of the observed hysteresis. Using the Fresnel thin-film coefficients, Drude model, and the resistivity in semiconductors we found the activation energy in the insulating phase and show that it can be lowered with THz fields. We employed THz time domain spectroscopy to extract the frequency dependence and to observe the transiently induced IMT from the strong THz fields. We attempted to fabricate sub-diffraction-limit imaging bulls-eye structures in the Oregon State University cleanroom. During the course of the project, recipes for two different types of photoresists, SU-8 2100 and SU-8 5, were developed. We observed lack of adhesion of the metal (Al) layer for the metal-dielectric interface. Lastly the removal of metal for the apertures posed additional problems. While this project did not ultimately succeed, we present an explanation of the issues associated with their fabrication and the steps necessary to complete fabrication.

Metamaterial Electromagnetic Wave Absorbers

Metamaterial Electromagnetic Wave Absorbers
Author: Willie J. Padilla
Publisher: Morgan & Claypool Publishers
Total Pages: 199
Release: 2022-01-24
Genre: Science
ISBN: 1636392601

Electromagnetic metamaterials are a family of shaped periodic materials which achieve extraordinary scattering properties that are difficult or impossible to achieve with naturally occurring materials. This book focuses on one such feature of electromagnetic metamaterials—the theory, properties, and applications of the absorption of electromagnetic radiation. We have written this book for undergraduate and graduate students, researchers, and practitioners, covering the background and tools necessary to engage in the research and practice of metamaterial electromagnetic wave absorbers in various fundamental and applied settings. Given the growing impact of climate change, the call for innovations that can circumvent the use of conventional energy sources will be increasingly important. As we highlight in Chapter 6, the absorption of radiation with electromagnetic metamaterials has been used for energy harvesting and energy generation, and will help to reduce reliance on fossil fuels. Other applications ranging from biochemical sensing to imaging are also covered. We hope this book equips interested readers with the tools necessary to successfully engage in applied metamaterials research for clean, sustainable energy. This book consists of six chapters. Chapter 1 provides an introduction and a brief history of electromagnetic wave absorbers; Chapter 2 focuses on several theories of perfect absorbers; Chapter 3 discusses the scattering properties achievable with metamaterial absorbers; Chapter 4 provides significant detail on the fabricational processes; Chapter 5 discusses examples of dynamical absorbers; and Chapter 6 highlights applications of metamaterial absorbers.

Handbook of Terahertz Technology for Imaging, Sensing and Communications

Handbook of Terahertz Technology for Imaging, Sensing and Communications
Author: D Saeedkia
Publisher: Elsevier
Total Pages: 684
Release: 2013-01-16
Genre: Technology & Engineering
ISBN: 0857096494

The recent development of easy-to-use sources and detectors of terahertz radiation has enabled growth in applications of terahertz (Thz) imaging and sensing. This vastly adaptable technology offers great potential across a wide range of areas, and the Handbook of terahertz technology for imaging, sensing and communications explores the fundamental principles, important developments and key applications emerging in this exciting field. Part one provides an authoritative introduction to the fundamentals of terahertz technology for imaging, sensing and communications. The generation, detection and emission of waves are discussed alongside fundamental aspects of surface plasmon polaritons, terahertz near-field imaging and sensing, room temperature terahertz detectors and terahertz wireless communications. Part two goes on to discuss recent progress and such novel techniques in terahertz technology as terahertz bio-sensing, array imagers, and resonant field enhancement of terahertz waves. Fiber-coupled time-domain spectroscopy systems (THz-TDS), terahertz photomixer systems, terahertz nanotechnology, frequency metrology and semiconductor material development for terahertz applications are all reviewed. Finally, applications of terahertz technology are explored in part three, including applications in tomographic imaging and material spectroscopy, art conservation, and the aerospace, wood products, semiconductor and pharmaceutical industries. With its distinguished editor and international team of expert contributors, the Handbook of terahertz technology for imaging, sensing and communications is an authoritative guide to the field for laser engineers, manufacturers of sensing devices and imaging equipment, security companies, the military, professionals working in process monitoring, and academics interested in this field. Examines techniques for the generation and detection of terahertz waves Discusses material development for terahertz applications Explores applications in tomographic imaging, art conservation and the pharmaceutical and aerospace industries

Handbook of Terahertz Technologies

Handbook of Terahertz Technologies
Author: Ho-Jin Song
Publisher: CRC Press
Total Pages: 606
Release: 2015-04-15
Genre: Science
ISBN: 9814613096

Terahertz waves, which lie in the frequency range of 0.1-10 THz, have long been investigated in a few limited fields, such as astronomy, because of a lack of devices for their generation and detection. Several technical breakthroughs made over the last couple of decades now allow us to radiate and detect terahertz waves more easily, which has trigg

Fundamental & Applied Problems Of Terahertz Devices And Technologies: Selected Papers From The Russia-japan-usa Symposium (Rjus Teratech-2014)

Fundamental & Applied Problems Of Terahertz Devices And Technologies: Selected Papers From The Russia-japan-usa Symposium (Rjus Teratech-2014)
Author: Michael S Shur
Publisher: World Scientific
Total Pages: 102
Release: 2015-08-13
Genre: Technology & Engineering
ISBN: 9814725218

This book brings together seven selected best papers presented at the 2014 Russia-Japan-USA Symposium on Fundamental and Applied Problems of Terahertz Devices and Technologies (RJUS TeraTech-2014), which was held at the University of Buffalo, New York, USA on 17-21 June 2014.As the third in the series of annual meetings, RJUS TeraTech-2014 continues to be an excellent platform for researchers to exchange their recent original results, and to deal with the technical challenges and barriers of transitioning the research results into the THz system-level applications. The symposium focuses on 2 main areas, namely, interaction of THz radiation with micro- and nano-structures, and advanced solid-state THz emitters and sensors. Leading experts from academia, industry, and government agencies from three countries, including USA, Japan, and Russia, contributed to the collection of research results and developments.This book, covering issues ranging from basic Thz-related phenomena to applications in sensing, imaging, and communications, contains some ground-breaking works in the industry, and will be a useful reference for device and electronics engineers and scientists.

Terahertz Spectroscopy of Two-dimensional Subwavelength Plasmonic Structures

Terahertz Spectroscopy of Two-dimensional Subwavelength Plasmonic Structures
Author:
Publisher:
Total Pages:
Release: 2009
Genre:
ISBN:

The fascinating properties of plasmonic structures have had significant impact on the development of next generation ultracompact photonic and optoelectronic components. We study two-dimensional plasmonic structures functioning at terahertz frequencies. Resonant terahertz response due to surface plasmons and dipole localized surface plasmons were investigated by the state-of-the-art terahertz time domain spectroscopy (THz-TDS) using both transmission and reflection configurations. Extraordinary terahertz transmission was demonstrated through the subwavelength metallic hole arrays made from good conducting metals as well as poor metals. Metallic arrays m!lde from Pb, generally a poor metal, and having optically thin thicknesses less than one-third of a skin depth also contributed in enhanced THz transmission. A direct transition of a surface plasmon resonance from a photonic crystal minimum was observed in a photo-doped semiconductor array. Electrical controls of the surface plasmon resonances by hybridization of the Schottkey diode between the metallic grating and the semiconductor substrate are investigated as a function of the applied reverse bias. In addition, we have demonstrated photo-induced creation and annihilation of surface plasmons with appropriate semiconductors at room temperature. According to the Fano model, the transmission properties are characterized by two essential contributions: resonant excitation of surface plasmons and nonresonant direct transmission. Such plasmonic structures may find fascinating applications in terahertz imaging, biomedical sensing, subwavelength terahertz spectroscopy, tunable filters, and integrated terahertz devices.

Quantum Plasmonics

Quantum Plasmonics
Author: Sergey I. Bozhevolnyi
Publisher: Springer
Total Pages: 338
Release: 2016-11-26
Genre: Science
ISBN: 3319458205

This book presents the latest results of quantum properties of light in the nanostructured environment supporting surface plasmons, including waveguide quantum electrodynamics, quantum emitters, strong-coupling phenomena and lasing in plasmonic structures. Different approaches are described for controlling the emission and propagation of light with extreme light confinement and field enhancement provided by surface plasmons. Recent progress is reviewed in both experimental and theoretical investigations within quantum plasmonics, elucidating the fundamental physical phenomena involved and discussing the realization of quantum-controlled devices, including single-photon sources, transistors and ultra-compact circuitry at the nanoscale.

Advances in Terahertz Technology and Its Applications

Advances in Terahertz Technology and Its Applications
Author: Sudipta Das
Publisher: Springer Nature
Total Pages: 375
Release: 2021-10-30
Genre: Science
ISBN: 9811657319

This book highlights the growing applications of THz technology and various modules used for their successful realization. The enormous advantages of THz devices like higher resolution, spatial directivity, high-speed communication, greater bandwidth, non-ionizing signal nature and compactness make them useful in various applications like communication, sensing, security, safety, spectroscopy, manufacturing, bio-medical, agriculture, imaging, etc. Since the THz radiation covers frequencies from 0.1THz to around 10THz and highly attenuated by atmospheric gases, they are used in short-distance applications only. The book focuses on recent advances and different research issues in terahertz technology and presents theoretical, methodological, well-established and validated empirical works dealing with the different topics.

Plasmonic Devices Employing Extreme Light Concentration

Plasmonic Devices Employing Extreme Light Concentration
Author: Ragip Pala
Publisher: Stanford University
Total Pages: 95
Release: 2010
Genre:
ISBN:

The development of integrated electronic and photonic circuits has led to remarkable data processing and transport capabilities that permeate almost every facet of our daily lives. Scaling these devices to smaller and smaller dimensions has enabled faster, more power efficient and inexpensive components but has also brought about a myriad of new challenges. One very important challenge is the growing size mismatch between electronic and photonic components. To overcome this challenge, we will need to develop radically new device technologies that can facilitate information transport between nanoscale components at optical frequencies and form a bridge between the world of nano-electronic and micro-photonics. Plasmonics is an exciting new field of science and technology that aims to exploit the unique optical properties of metallic nanostructures to gain a new level of control over light-matter interactions. The use of nanometallic (plasmonic) structures may help bridge the size gap between the two technologies and enable an increased synergy between chip-scale electronics and photonics. In the first part of this dissertation we analyze the performance of a surface plasmon-polariton all-optical switch that combines the unique physical properties of small molecules and metallic (plasmonic) nanostructures. The switch consists of a pair of gratings defined on an aluminum film coated with a thin layer of photochromic (PC) molecules. The first grating couples a signal beam consisting of free space photons to SPPs that interact effectively with the PC molecules. These molecules can reversibly be switched between transparent and absorbing states using a free space optical pump. In the transparent (signal "on") state, the SPPs freely propagate through the molecular layer, and in the absorbing (signal "off") state, the SPPs are strongly attenuated. The second grating serves to decouple the SPPs back into a free space optical beam, enabling measurement of the modulated signal with a far-field detector. We confirm and quantify the switching behavior of the PC molecules by using a surface plasmon resonance spectroscopy. The quantitative experimental and theoretical analysis of the nonvolatile switching behavior guides the design of future nanoscale optically or electrically pumped optical switches. In the second part of the dissertation we provide a critical assessment of the opportunities for use of plasmonic nanostructures in thin film solar cell technology. Thin-film solar cells have attracted significant attention as they provide a viable pathway towards reduced materials and processing costs. Unfortunately, the materials quality and resulting energy conversion efficiencies of such cells is still limiting their rapid large-scale implementation. The low efficiencies are a direct result of the large mismatch between electronic and photonic length scales in these devices; the absorption depth of light in popular PV semiconductors tends to be longer than the electronic (minority carrier) diffusion length in deposited thin-film materials. As a result, charge extraction from optically thick cells is challenging due to carrier recombination in the bulk of the semiconductor. We discuss how light absorption could be improved in ultra-thin layers of active material making use of large scattering cross sections of plasmonic structures. We present a combined computational-experimental study aimed at optimizing plasmon-enhanced absorption using periodic and non-periodic metal nanostructure arrays.

Semiconductor TeraHertz Technology

Semiconductor TeraHertz Technology
Author: Guillermo Carpintero
Publisher: John Wiley & Sons
Total Pages: 408
Release: 2015-07-14
Genre: Technology & Engineering
ISBN: 1118920406

Key advances in Semiconductor Terahertz (THz) Technology now promises important new applications enabling scientists and engineers to overcome the challenges of accessing the so-called "terahertz gap". This pioneering reference explains the fundamental methods and surveys innovative techniques in the generation, detection and processing of THz waves with solid-state devices, as well as illustrating their potential applications in security and telecommunications, among other fields. With contributions from leading experts, Semiconductor Terahertz Technology: Devices and Systems at Room Temperature Operation comprehensively and systematically covers semiconductor-based room temperature operating sources such as photomixers, THz antennas, radiation concepts and THz propagation as well as room-temperature operating THz detectors. The second part of the book focuses on applications such as the latest photonic and electronic THz systems as well as emerging THz technologies including: whispering gallery resonators, liquid crystals, metamaterials and graphene-based devices. This book will provide support for practicing researchers and professionals and will be an indispensable reference to graduate students in the field of THz technology. Key features: Includes crucial theoretical background sections to photomixers, photoconductive switches and electronic THz generation & detection. Provides an extensive overview of semiconductor-based THz sources and applications. Discusses vital technologies for affordable THz applications. Supports teaching and studying increasingly popular courses on semiconductor THz technology.