SLIM21

Sort Order Display Format Items / Page  
 
  Click the serial number on the left to view the details of the item.
 #  AuthorTitleAccn#YearItem Type Claims
1 Mogi, Masataka Quantized Phenomena of Transport and Magneto-Optics in Magnetic Topological Insulator Heterostructures I12562 2022 Book  
2 Noguchi, Ryo Designing Topological Phase of Bismuth Halides and Controlling Rashba Effect in Films Studied by ARPES I12550 2022 Book  
3 Yonaga, Kouki Mass Term Effect on Fractional Quantum Hall States of Dirac Particles I12484 2022 Book  
4 Wei, Peijun Theory of Elastic Waves I12356 2022 Book  
5 Terakawa, Shigemi Structure and Electronic Properties of Ultrathin In Films on Si(111) I12315 2022 Book  
6 Ludu, Andrei Nonlinear Waves and Solitons on Contours and Closed Surfaces I12309 2022 Book  
7 Tajarudin, Husnul Azan Biocoating for Fertilizer Industry I12277 2022 Book  
8 Zhou, Yichun Thermal Barrier Coatings: Failure Theory and Evaluation Technology I12245 2022 Book  
9 Sato, Yuki Quantum Oscillations and Charge-Neutral Fermions in Topological Kondo Insulator YbB?????? I11897 2021 eBook  
10 Sugioka, Koji Handbook of Laser Micro- and Nano-Engineering I11889 2021 eBook  
(page:1 / 2) [#12]    Next Page   Last Page 

1.    
No image available
TitleQuantized Phenomena of Transport and Magneto-Optics in Magnetic Topological Insulator Heterostructures
Author(s)Mogi, Masataka
PublicationSingapore, 1. Imprint: Springer 2. Springer Nature Singapore, 2022.
DescriptionXV, 109 p. 64 illus., 61 illus. in color : online resource
Abstract NoteThis book presents experimental studies on emergent transport and magneto-optical properties in three-dimensional topological insulators with two-dimensional Dirac fermions on their surfaces. Designing magnetic heterostructures utilizing a cutting-edge growth technique (molecular beam epitaxy) stabilizes and manifests new quantization phenomena, as confirmed by low-temperature electrical transport and time-domain terahertz magneto-optical measurements. Starting with a review of the theoretical background and recent experimental advances in topological insulators in terms of a novel magneto-electric coupling, the author subsequently explores their magnetic quantum properties and reveals topological phase transitions between quantum anomalous Hall insulator and trivial insulator phases; a new topological phase (the axion insulator); and a half-integer quantum Hall state associated with the quantum parity anomaly. Furthermore, the author shows how these quantum phases can be significantly stabilized via magnetic modulation doping and proximity coupling with a normal ferromagnetic insulator. These findings provide a basis for future technologies such as ultra-low energy consumption electronic devices and fault-tolerant topological quantum computers
ISBN,Price9789811921377
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. ELECTRONIC DEVICES 4. SEMICONDUCTORS 5. SOLID STATE PHYSICS 6. SPINTRONICS 7. Surface and Interface and Thin Film 8. Surfaces (Physics) 9. Topological insulators 10. Topological Material
Item TypeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I12562     On Shelf    

2.     
No image available
TitleDesigning Topological Phase of Bismuth Halides and Controlling Rashba Effect in Films Studied by ARPES
Author(s)Noguchi, Ryo
PublicationSingapore, 1. Imprint: Springer 2. Springer Nature Singapore, 2022.
DescriptionXV, 126 p. 81 illus., 80 illus. in color : online resource
Abstract NoteThis book presents the observation and the control of spin-polarized electrons in Rashba thin films and topological insulators, including the first observations of a weak topological insulator (WTI) and a higher-order topological insulator (HOTI) in bismuth halides. It begins with a general review of electronic structures at the solid surface and mentions that an electron spin at a surface is polarized due to the Rashba effect or topological insulator states with strong spin-orbit coupling. Subsequently it describes the experimental techniques used to study these effects, that is, angle-resolved photoemission spectroscopy (ARPES). Further it moves its focus onto the experimental investigations, in which mainly two different systems???noble metal thin films with the Rashba effects and bismuth halides topological insulators???are used. The study of the first system discusses the role of wavefunctions in spin-splitting and demonstrates a scaling law for the Rashba effect in quantum well films for the first time. High-resolution spin-resolved ARPES plays a vital role in systematically trace the thickness-evolution of the effect. The study of the latter material is the first experimental demonstration of both a WTI and HOTI state in bismuth iodide and bismuth bromide, respectively. Importantly, nano-ARPES with high spatial resolution is used to confirm the topological surface states on the side surface of the crystal, which is the hallmark of WTIs. The description of the basic and recently-developed ARPES technique with spin-resolution or spatial-resolution, essential in investigating spin-polarized electrons at a crystal surface, makes the book a valuable source for researchers not only in surface physics or topological materials but also in spintronics and other condensed-matter physics
ISBN,Price9789811918742
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. SPINTRONICS 4. Surface and Interface and Thin Film 5. Surfaces (Physics) 6. Topological insulators 7. Topological Material
Item TypeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I12550     On Shelf    

3.     
No image available
TitleMass Term Effect on Fractional Quantum Hall States of Dirac Particles
Author(s)Yonaga, Kouki
PublicationSingapore, 1. Imprint: Springer 2. Springer Nature Singapore, 2022.
DescriptionXII, 90 p. 58 illus., 51 illus. in color : online resource
Abstract NoteThis book presents the high-precision analysis of ground states and low-energy excitations in fractional quantum Hall states formed by Dirac electrons, which have attracted a great deal of attention. In particular the author focuses on the physics of fractional quantum Hall states in graphene on a hexagonal boron nitride substrate, which was recently implemented in experiments. The numerical approach employed in the book, which uses an exact numerical diagonalization of an effective model Hamiltonian on a Haldane???s sphere based on pseudopotential representation of electron interaction, provides a better understanding of the recent experiments. The book reviews various aspects of quantum Hall effect: a brief history, recent experiments with graphene, and fundamental theories on integer and fractional Hall effects. It allows readers to quickly grasp the physics of quantum Hall states of Dirac fermions, and to catch up on latest research on the quantum Hall effect in graphene
ISBN,Price9789811691669
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. ELECTRONIC DEVICES 4. MATHEMATICAL PHYSICS 5. SEMICONDUCTORS 6. SOLID STATE PHYSICS 7. SUPERCONDUCTIVITY 8. SUPERCONDUCTORS 9. Surface and Interface and Thin Film 10. Surfaces (Physics) 11. Surfaces (Technology) 12. Surfaces, Interfaces and Thin Film 13. Theoretical, Mathematical and Computational Physics 14. THIN FILMS
Item TypeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I12484     On Shelf    

4.     
No image available
TitleTheory of Elastic Waves
Author(s)Wei, Peijun
PublicationSingapore, 1. Imprint: Springer 2. Springer Nature Singapore, 2022.
DescriptionXIII, 361 p. 102 illus., 27 illus. in color : online resource
Abstract NoteThis book highlights a systematic introduction to the basic theory of elastic wave propagation in complex media. The theory of elastic waves is widely used in fields such as geophysical exploration, seismic survey, medical ultrasound imaging, nondestructive testing of materials and structures, phononic crystals, metamaterials and structure health monitoring. To help readers develop a systematic grasp of the basic theory, and thus its applications, the book elaborates on the theory of elastic wave propagation in isotropic solid media, covering phenomena in infinite media, interfaces, layered structure with finite thickness, Rayleigh wave and Love wave propagating along the surface of semi-infinite solid and covering layer, and the guided waves and leaky waves in flat plates and in cylindrical rods. The propagation patterns and features of guided waves in cylindrical shells and spherical shells are also introduced. The author wrote the book based on a decade of teaching experience of a graduate course of the same name and two decades of research on the theory and applications. The book is a valuable reference for students, researchers and professionals who expect an understandable and comprehensive discussion of the theory, analytical methods and related research results
ISBN,Price9789811956621
Keyword(s)1. ACOUSTICS 2. CONTINUUM MECHANICS 3. EBOOK 4. EBOOK - SPRINGER 5. Mechanics, Applied 6. Solid Mechanics 7. SOLIDS 8. Surface and Interface and Thin Film 9. Surfaces (Physics)
Item TypeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I12356     On Shelf    

5.     
No image available
TitleStructure and Electronic Properties of Ultrathin In Films on Si(111)
Author(s)Terakawa, Shigemi
PublicationSingapore, 1. Imprint: Springer 2. Springer Nature Singapore, 2022.
DescriptionXIV, 76 p. 42 illus., 39 illus. in color : online resource
Abstract NoteThis book reports the establishment of a single-atomic layer metal of In and a novel (In, Mg) ultrathin film on Si(111) surfaces. A double-layer phase of In called ???rect??? has been extensively investigated as a two-dimensional metal. Another crystalline phase called ???hex??? was also suggested, but it had not been established due to difficulty in preparing the sample. The author succeeded in growing the large and high-quality sample of the hex phase and revealed that it is a single-layer metal. The author also established a new triple-atomic layer (In, Mg) film with a nearly freestanding character by Mg deposition onto the In double layer. This work proposes a novel method to decouple ultrathin metal films from Si dangling bonds. The present study demonstrates interesting properties of indium itself, which is a p-block metal both with metallicity and covalency. In this book, readers also see principles of various surface analysis techniques and learn how to use them and analyze the results in the real systems. This book is useful to researchers and students interested in surface science, particularly ultrathin metal films on semiconductor surfaces
ISBN,Price9789811968723
Keyword(s)1. Characterization and Analytical Technique 2. Density Functional Theory 3. Density functionals 4. EBOOK 5. EBOOK - SPRINGER 6. INORGANIC CHEMISTRY 7. Materials???Analysis 8. METALS 9. Metals and Alloys 10. Surface and Interface and Thin Film 11. Surfaces (Physics) 12. Surfaces (Technology) 13. Surfaces, Interfaces and Thin Film 14. THIN FILMS
Item TypeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I12315     On Shelf    

6.     
No image available
TitleNonlinear Waves and Solitons on Contours and Closed Surfaces
Author(s)Ludu, Andrei
PublicationCham, 1. Imprint: Springer 2. Springer International Publishing, 2022.
DescriptionXXXII, 566 p. 171 illus., 68 illus. in color : online resource
Abstract NoteThis new edition has been thoroughly revised, expanded and contain some updates function of the novel results and shift of scientific interest in the topics. The book has a Foreword by Jerry L. Bona and Hongqiu Chen. The book is an introduction to nonlinear waves and soliton theory in the special environment of compact spaces such a closed curves and surfaces and other domain contours. It assumes familiarity with basic soliton theory and nonlinear dynamical systems. The first part of the book introduces the mathematical concept required for treating the manifolds considered, providing relevant notions from topology and differential geometry. An introduction to the theory of motion of curves and surfaces - as part of the emerging field of contour dynamics - is given. The second and third parts discuss the modeling of various physical solitons on compact systems, such as filaments, loops and drops made of almost incompressible materials thereby intersecting with a large number of physical disciplines from hydrodynamics to compact object astrophysics. This book is intended for graduate students and researchers in mathematics, physics and engineering
ISBN,Price9783031146411
Keyword(s)1. Classical and Continuum Physics 2. DIFFERENTIAL GEOMETRY 3. EBOOK 4. EBOOK - SPRINGER 5. GEOMETRY, DIFFERENTIAL 6. Mathematical Methods in Physics 7. MATHEMATICAL PHYSICS 8. PHYSICS 9. Soft and Granular Matter 10. Soft condensed matter 11. Surface and Interface and Thin Film 12. Surfaces (Physics)
Item TypeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I12309     On Shelf    

7.     
No image available
TitleBiocoating for Fertilizer Industry
Author(s)Tajarudin, Husnul Azan;Ng, Charles Wai Chun
PublicationSingapore, 1. Imprint: Springer 2. Springer Nature Singapore, 2022.
DescriptionIX, 72 p. 27 illus., 24 illus. in color : online resource
Abstract NoteThis book presents the advancement of coating materials technology especially in agriculture, particularly for fertilizers. Fertilizers are a critical component in meeting rising demands and ensuring global food security. A new generation of fertilizers made by coating granules with biopolymers address these issues. Coating in agriculture is an important area in research for a more sustainable future. Many examples and instances from existing research and related research gaps are discussed. It includes applications of composites as fertilizer???s coating, advantages and disadvantages of fertilizer coating from composites, applications of bacteria in composite, applications of bacteria in fertilizer industry as well as the common techniques of coating fertilizers with drying process
ISBN,Price9789811960352
Keyword(s)1. Agricultural biotechnology 2. Biofilms 3. Biomaterials 4. Biopolymers 5. EBOOK 6. EBOOK - SPRINGER 7. Mathematical Modeling and Industrial Mathematics 8. MATHEMATICAL MODELS 9. Surface and Interface and Thin Film 10. Surfaces (Physics)
Item TypeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I12277     On Shelf    

8.     
No image available
TitleThermal Barrier Coatings: Failure Theory and Evaluation Technology
Author(s)Zhou, Yichun;Yang, Li;Zhu, Wang
PublicationSingapore, 1. Imprint: Springer 2. Springer Nature Singapore, 2022.
DescriptionXVI, 934 p. 627 illus., 528 illus. in color : online resource
Abstract NoteThis book highlights the failure theories and evaluation techniques of thermal barrier coatings, covering the thermal-mechanical???chemical coupling theories, performance and damage characterization techniques, and related evaluations. Thermal barrier coatings are the key thermal protection materials for high-temperature components in advanced aeroengines. Coating spallation is a major technical bottleneck faced by researchers. The extremely complex microstructure, diverse service environments, and failure behaviors bring challenges to the spallation analysis in terms of the selective use of mechanical theories, experimental methods, and testing platforms. In the book, the authors provide a systematic summary of the latest research and technological advances and present their insights and findings in the past couple of decades. This book is not only suitable for researchers and engineers in thermal barrier coatings and related fields but also a good reference for upper-undergraduate and postgraduate students of materials science and mechanics majors
ISBN,Price9789811927232
Keyword(s)1. Coatings 2. CONTINUUM MECHANICS 3. EBOOK 4. EBOOK - SPRINGER 5. Engineering Thermodynamics, Heat and Mass Transfer 6. Heat engineering 7. HEAT TRANSFER 8. MASS TRANSFER 9. Surface and Interface and Thin Film 10. Surfaces (Physics) 11. THERMODYNAMICS
Item TypeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I12245     On Shelf    

9.     
No image available
TitleQuantum Oscillations and Charge-Neutral Fermions in Topological Kondo Insulator YbB??????
Author(s)Sato, Yuki
PublicationSingapore, Springer Nature Singapore, 2021.
DescriptionXVI, 86 p. 47 illus., 45 illus. in color : online resource
Abstract NoteElectronic state of every solid is basically classified into two categories according to its electrical responses: insulator or metal. A textbook of modern solid state physics explains that shape of a Fermi surface plays a key role in most physical properties in metals. One of the well-established experimental methods to detect a Fermi surface is measurement of quantum oscillations that is a periodic response of physical quantities with respect to external magnetic fields. As insulators do not host Fermi surface, it is believed that they do not exhibit any quantum oscillations. This book presents a comprehensive review of recent observations of quantum oscillations in the Kondo insulators, SmB6 and YbB12, and discusses how the observations are demonstrated by a newly proposed mechanism where emergent charge-neutral fermions exhibit quantum oscillations instead of bare electrons. It also focuses on topological properties of Kondo insulators, and demonstrates that YbB12 hosts a surface metallic conduction owing to its non-trivial band structure. Further it presents the experiments of specific heat and thermal conductivity in YbB12 down to ultra-low temperature to discuss the possible low-energy excitations from a Fermi surface of neutral fermions. The demonstrated gapless and itinerant fermionic excitations, that is the significant contribution from charge neutral fermions, violates Wiedemann-Franz law. The discoveries point out a highly unconventional phase of quantum state???electrically insulating but thermally metallic???realized in the bulk of topological Kondo insulators
ISBN,Price9789811656774
Keyword(s)1. CONDENSED MATTER 2. CONDENSED MATTER PHYSICS 3. EBOOK 4. EBOOK - SPRINGER 5. Strongly Correlated Systems 6. Surface and Interface and Thin Film 7. Surfaces (Physics)
Item TypeeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I11897     On Shelf    

10.    
No image available
TitleHandbook of Laser Micro- and Nano-Engineering
Author(s)Sugioka, Koji
PublicationCham, Springer International Publishing, 2021.
Description1136 illus., 803 illus. in color. eReference : online resource
Abstract NoteThis handbook provides a comprehensive review of the entire field of laser micro and nano processing, including not only a detailed introduction to individual laser processing techniques but also the fundamentals of laser-matter interaction and lasers, optics, equipment, diagnostics, as well as monitoring and measurement techniques for laser processing. Consisting of 11 sections, each composed of 4 to 6 chapters written by leading experts in the relevant field. Each main part of the handbook is supervised by its own part editor(s) so that high-quality content as well as completeness are assured. The book provides essential scientific and technical information to researchers and engineers already working in the field as well as students and young scientists planning to work in the area in the future. Lasers found application in materials processing practically since their invention in 1960, and are currently used widely in manufacturing. The main driving force behind this fact is that the lasers can provide unique solutions in material processing with high quality, high efficiency, high flexibility, high resolution, versatility and low environmental load. Macro-processing based on thermal process using infrared lasers such as CO2 lasers has been the mainstream in the early stages, while research and development of micro- and nano-processing are becoming increasingly more active as short wavelength and/or short pulse width lasers have been developed. In particular, recent advances in ultrafast lasers have opened up a new avenue to laser material processing due to the capabilities of ultrahigh precision micro- and nanofabrication of diverse materials. This handbook is the first book covering the basics, the state-of-the-art and important applications of the dynamic and rapidly expanding discipline of laser micro- and nanoengineering. This comprehensive source makes readers familiar with a broad spectrum of approaches to solve all relevant problems in science and technology. This handbook is the ultimate desk reference for all people working in the field
ISBN,Price9783030636470
Keyword(s)1. ASTRONOMY 2. EBOOK 3. EBOOK - SPRINGER 4. LASER 5. LASERS 6. MATERIALS 7. Materials Engineering 8. Microelectromechanical systems 9. Microsystems and MEMS 10. Microtechnology 11. NANOTECHNOLOGY 12. PHYSICS 13. PHYSICS AND ASTRONOMY 14. Surface and Interface and Thin Film 15. Surfaces (Physics)
Item TypeeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I11889     On Shelf    

(page:1 / 2) [#12]    Next Page   Last Page