Each index entry below is accompanied by an author's name and a
page number; the author index contains the title of the paper and the
names of coauthors, if any.
Aerodynamics
Approximate performance of periodic hypersonic cruise trajectories for global reach
suite |
Carter |
703
|
| Frequency response sensitivity functions for helicopter frequency domain system identification |
Jones |
748
|
Algorithms
Applying recursion to serial and parallel QR factorization leads to better performance
suite |
Elmroth |
605
|
| Finite-element analysis of semiconductor devices: The FIELDAY program |
Buturla |
142
|
| Minimal-storage high-performance Cholesky factorization via blocking and recursion |
Gustavson |
823
|
Alloys
Characterization of constitutional liquid film migration in nickel-base alloy 718
suite |
Acoff |
668
|
| Nanosecond switching in thin magnetic films |
Dietrich |
167
|
Aluminum
Reduction of electromigration in aluminum films by copper doping
suite |
Ames |
89
|
Analytical models
Finite-element analysis of semiconductor devices: The FIELDAY program
suite |
Buturla |
142
|
Arithmetic and logical unit design
A multithreaded PowerPC processor for commercial servers
suite |
Borkenhagen |
885
|
| POWER3: The next generation of PowerPC processors |
O'Connell |
873
|
Artificial intelligence
Some studies in machine learning using the game of checkers
suite |
Samuel |
206
|
ASICs
Silicon:germanium-based mixed-signal technology for optimization of wired and wireless telecommunications
suite |
Meyerson |
391
|
Atomic force microscopy (AFM)
The MillipedeMore than one thousand tips for future AFM storage
suite |
Vettiger |
323
|
Biotechnology
Metabolic effects on recombinant interferon- glycosylation in continuous culture of Chinese hamster ovary cells suite |
Nyberg |
770
|
Carrier transport in small structures
Spatial variation of currents and fields due to localized scatterers in metallic conduction
suite |
Landauer |
251
|
Checkers and chess
Some studies in machine learning using the game of checkers
suite |
Samuel |
206
|
Chemical vapor deposition
Low-temperature Si and Si:Ge epitaxy by ultrahigh-vacuum/chemical vapor deposition: Process fundamentals
suite |
Meyerson |
132
|
Chemistry and chemical engineering
Chemical amplification resists: History and development within IBM
suite |
Ito |
119
|
Circuit and device technology
Custom circuit design as a driver of microprocessor performance
suite |
Allen |
799
|
| Design and characteristics of n-channel insulated-gate field-effect transistors |
Critchlow |
70
|
| LSI yield modeling and process monitoring |
Stapper |
112
|
| Silicon:germanium-based mixed-signal technology for optimization of wired and wireless telecommunications |
Meyerson |
391
|
| The future of CMOS technology |
Isaac |
369
|
| The future of interconnection technology |
Theis |
379
|
CMOS
Picosecond imaging circuit analysis
suite |
Tsang |
583
|
| Silicon:germanium-based mixed-signal technology for optimization of wired and wireless telecommunications |
Meyerson |
391
|
| The future of CMOS technology |
Isaac |
369
|
Codes and coding
Holographic data storage
suite |
Ashley |
341
|
Communication theory
Notes on the history of reversible computation
suite |
Bennett |
270
|
Communications and communication networks
Bandwidth problems in high-speed networks
suite |
Saroit Ismail |
919
|
Compilers and interpreters
The 801 minicomputer
suite |
Radin |
37
|
Computational methods
Applying recursion to serial and parallel QR factorization leads to better performance
suite |
Elmroth |
605
|
| Minimal-storage high-performance Cholesky factorization via blocking and recursion |
Gustavson |
823
|
Computer architecture
A multithreaded PowerPC processor for commercial servers
suite |
Borkenhagen |
885
|
| POWER3: The next generation of PowerPC processors |
O'Connell |
873
|
| S/390 microprocessor design |
Webb |
899
|
| The 801 minicomputer |
Radin |
37
|
Computer organization and design
A multithreaded PowerPC processor for commercial servers
suite |
Borkenhagen |
885
|
| A performance methodology for commercial servers |
Kunkel |
851
|
| POWER3: The next generation of PowerPC processors |
O'Connell |
873
|
| S/390 microprocessor design |
Webb |
899
|
| The 801 minicomputer |
Radin |
37
|
Computer-aided design
The evolution of RISC technology at IBM
suite |
Cocke |
48
|
Computers
Irreversibility and heat generation in the computing process
suite |
Landauer |
261
|
Control theory and systems
Stability of nonlinear polynomial ARMA models and their inverse
suite |
Hernández |
725
|
Controlled-collapse chip connection (C-4) technology
Controlled collapse reflow chip joining
suite |
Miller |
93
|
Copper
The future of interconnection technology
suite |
Theis |
379
|
Cryptography
Cryptography
suite |
Coppersmith |
246
|
Data transmission
Bandwidth problems in high-speed networks
suite |
Saroit Ismail |
919
|
Data, structures and accessing
Applying recursion to serial and parallel QR factorization leads to better performance
suite |
Elmroth |
605
|
| Holographic data storage |
Ashley |
341
|
| Minimal-storage high-performance Cholesky factorization via blocking and recursion |
Gustavson |
823
|
| The future of magnetic data storage technology |
Thompson |
311
|
| The MillipedeMore than one thousand tips for future AFM storage |
Vettiger |
323
|
Design automation
LSS: A system for production logic synthesis
suite |
Darringer |
157
|
Device design
Custom circuit design as a driver of microprocessor performance
suite |
Allen |
799
|
| The future of CMOS technology |
Isaac |
369
|
Dielectrics
The future of CMOS technology
suite |
Isaac |
369
|
Digital computers
Some studies in machine learning using the game of checkers
suite |
Samuel |
206
|
| The Random-Access Memory Accounting Machine: I. System organization of the IBM 305 |
Lesser |
6
|
| The Random-Access Memory Accounting Machine: II. The magnetic-disk, random-access memory |
Noyes |
16
|
Display technology
An SXGA reflective liquid crystal projection light valve incorporating inversion by pixel bootstrapping
suite |
Schlig |
909
|
| Electronic displays for information technology |
Wisnieff |
409
|
Electrical conduction
Spatial variation of currents and fields due to localized scatterers in metallic conduction
suite |
Landauer |
251
|
Electron microscopy
Atomic resolution analytical microscopy
suite |
Batson |
477
|
| Growth processes and phase transformations studied by in situ transmission electron microscopy |
Ross |
489
|
| Low-energy electron microscopy |
Tromp |
503
|
| Spin-polarized scanning electron microscopy |
Allenspach |
553
|
Fabrication
Controlled collapse reflow chip joining
suite |
Miller |
93
|
| Silicon:germanium-based mixed-signal technology for optimization of wired and wireless telecommunications |
Meyerson |
391
|
| The future of CMOS technology |
Isaac |
369
|
Films
Application of rf discharges to sputtering
suite |
Koenig |
106
|
| Reduction of electromigration in aluminum films by copper doping |
Ames |
89
|
Films, epitaxy
Silicon:germanium-based mixed-signal technology for optimization of wired and wireless telecommunications
suite |
Meyerson |
391
|
Films, magnetic
Magnetic thin films in recording technology
suite |
Dietrich |
167
|
| Nanosecond switching in thin magnetic films |
Speriosu |
186
|
| Spin-polarized scanning electron microscopy |
Allenspach |
553
|
Films, semiconductor
Low-temperature Si and Si:Ge epitaxy by ultrahigh-vacuum/chemical vapor deposition: Process fundamentals
suite |
Meyerson |
132
|
| Silicon:germanium-based mixed-signal technology for optimization of wired and wireless telecommunications |
Meyerson |
391
|
Films, thin
Magnetic thin films in recording technology
suite |
Speriosu |
186
|
| Nanosecond switching in thin magnetic films |
Dietrich |
167
|
Game theory
Some studies in machine learning using the game of checkers
suite |
Samuel |
206
|
Germanium
Silicon:germanium-based mixed-signal technology for optimization of wired and wireless telecommunications
suite |
Meyerson |
391
|
Holography
Holographic data storage
suite |
Ashley |
341
|
I/O devices, systems, and technology
An SXGA reflective liquid crystal projection light valve incorporating inversion by pixel bootstrapping
suite |
Schlig |
909
|
IBM SAGE system
The Random-Access Memory Accounting Machine: II. The magnetic-disk, random-access memory
suite |
Noyes |
16
|
IBM System/360
Architecture of the IBM System/360
suite |
Amdahl |
21
|
| Solid Logic Technology: Versatile, high-performance microelectronics |
Davis |
56
|
IBM System/390 Parallel Enterprise Server
S/390 microprocessor design
suite |
Webb |
899
|
IBM 305 (RAMAC)
The Random-Access Memory Accounting Machine: I. System organization of the IBM 305
suite |
Lesser |
6
|
IBM 350 (RAMAC)
The Random-Access Memory Accounting Machine: II. The magnetic-disk, random-access memory
suite |
Noyes |
16
|
Image processing
Parallel image processing with the block data parallel architecture
suite |
Alexander |
681
|
| Scanning tunneling microscopy |
Binnig |
279
|
Imaging technology
Electronic displays for information technology
suite |
Wisnieff |
409
|
Information technology
Electronic displays for information technology
suite |
Wisnieff |
409
|
Instrumentation
The MillipedeMore than one thousand tips for future AFM storage
suite |
Vettiger |
323
|
Insulators
Application of rf discharges to sputtering
suite |
Koenig |
106
|
Integrated circuit design
Custom circuit design as a driver of microprocessor performance
suite |
Allen |
799
|
Integrated circuits
Picosecond imaging circuit analysis
suite |
Tsang |
583
|
| Solid Logic Technology: Versatile, high-performance microelectronics |
Davis |
56
|
| The future of CMOS technology |
Isaac |
369
|
| The future of interconnection technology |
Theis |
379
|
Interconnection technology
The future of interconnection technology
suite |
Theis |
379
|
Lasers
Contributions of IBM to laser science1960 to the present
suite |
Sorokin |
294
|
Light
Holographic data storage
suite |
Ashley |
341
|
Liquid crystals
An SXGA reflective liquid crystal projection light valve incorporating inversion by pixel bootstrapping
suite |
Schlig |
909
|
| Electronic displays for information technology |
Wisnieff |
409
|
Lithography
Chemical amplification resists: History and development within IBM
suite |
Ito |
119
|
| Low-energy electron microscopy |
Tromp |
503
|
| The future of CMOS technology |
Isaac |
369
|
Logic design and technology
LSS: A system for production logic synthesis
suite |
Darringer |
157
|
| The future of CMOS technology |
Isaac |
369
|
Logic synthesis
LSS: A system for production logic synthesis
suite |
Darringer |
157
|
Magnetic head-disk interaction
A high track-density servo-access system for magnetic recording disk storage
suite |
Hoagland |
175
|
Magnetic recording
Magnetic thin films in recording technology
suite |
Speriosu |
186
|
Magneticsstudies and structures
Nanosecond switching in thin magnetic films
suite |
Dietrich |
167
|
| The future of magnetic data storage technology |
Thompson |
311
|
Magnetoresistance
The future of magnetic data storage technology
suite |
Thompson |
311
|
Materials
Medium-energy ion scattering for analysis of microelectronic materials
suite |
Copel |
571
|
| Scanning tunneling microscopy |
Binnig |
279
|
| X-ray spectro-microscopy of complex materials and surfaces |
Stöhr |
535
|
Materials technology
Controlled collapse reflow chip joining
suite |
Miller |
93
|
| Holographic data storage |
Ashley |
341
|
| Reduction of electromigration in aluminum films by copper doping |
Ames |
89
|
Mathematical functions and techniques
Applying recursion to serial and parallel QR factorization leads to better performance
suite |
Elmroth |
605
|
| Minimal-storage high-performance Cholesky factorization via blocking and recursion |
Gustavson |
823
|
Mathematics
Cryptography
suite |
Coppersmith |
246
|
Mathematics (applied)
Ab initio computations in atoms and molecules
suite |
Clementi |
228
|
Mechanical design
Scanning tunneling microscopy
suite |
Binnig |
279
|
Medicine and medical electronics
A fuzzy linguistic model for the prediction of carpal tunnel syndrome risks in an occupational environment
suite |
McCauley Bell |
759
|
Memory, random-access
The Random-Access Memory Accounting Machine: I. System organization of the IBM 305
suite |
Lesser |
6
|
| The Random-Access Memory Accounting Machine: II. The magnetic-disk, random-access memory |
Noyes |
16
|
Mesoscopic phenomena
Spatial variation of currents and fields due to localized scatterers in metallic conduction
suite |
Landauer |
251
|
Metallurgy
Characterization of constitutional liquid film migration in nickel-base alloy 718
suite |
Acoff |
668
|
| Controlled collapse reflow chip joining |
Miller |
93
|
| Reduction of electromigration in aluminum films by copper doping |
Ames |
89
|
| The future of interconnection technology |
Theis |
379
|
Microelectronics
Atomic resolution analytical microscopy
suite |
Batson |
477
|
| Custom circuit design as a driver of microprocessor performance |
Allen |
799
|
| Design and characteristics of n-channel insulated-gate field-effect transistors |
Critchlow |
70
|
| Growth processes and phase transformations studied by in situ transmission electron microscopy |
Ross |
489
|
| Low-energy electron microscopy |
Tromp |
503
|
| Medium-energy ion scattering for analysis of microelectronic materials |
Copel |
571
|
| Miniaturization of electronics and its limits |
Keyes |
84
|
| Monolithic packaging concepts for high isolation in circuits and antennas |
Drayton |
715
|
| Synchrotron X-ray scattering techniques for microelectronics-related materials studies |
Jordan-Sweet |
457
|
Micromachining
The MillipedeMore than one thousand tips for future AFM storage
suite |
Vettiger |
323
|
Microprocessor systems and applications
A multithreaded PowerPC processor for commercial servers
suite |
Borkenhagen |
885
|
| A performance methodology for commercial servers |
Kunkel |
851
|
| Custom circuit design as a driver of microprocessor performance |
Allen |
799
|
| Minimal-storage high-performance Cholesky factorization via blocking and recursion |
Gustavson |
823
|
| POWER3: The next generation of PowerPC processors |
O'Connell |
873
|
| S/390 microprocessor design |
Webb |
899
|
Models and modeling
A fuzzy linguistic model for the prediction of carpal tunnel syndrome risks in an occupational environment
suite |
McCauley Bell |
759
|
| A performance methodology for commercial servers |
Kunkel |
851
|
| Approximate performance of periodic hypersonic cruise trajectories for global reach |
Carter |
703
|
| Finite-element analysis of semiconductor devices: The FIELDAY program |
Buturla |
142
|
| Frequency response sensitivity functions for helicopter frequency domain system identification |
Jones |
748
|
| Stability of nonlinear polynomial ARMA models and their inverse |
Hernández |
725
|
Nanoscale structures and devices
The MillipedeMore than one thousand tips for future AFM storage
suite |
Vettiger |
323
|
Networks
Bandwidth problems in high-speed networks
suite |
Saroit Ismail |
919
|
Optical interconnections
The future of interconnection technology
suite |
Theis |
379
|
Optical lithography
Chemical amplification resists: History and development within IBM
suite |
Ito |
119
|
Optical science and technology
Holographic data storage
suite |
Ashley |
341
|
Optics
Holographic data storage
suite |
Ashley |
341
|
Packaging
Monolithic packaging concepts for high isolation in circuits and antennas
suite |
Drayton |
715
|
| Solid Logic Technology: Versatile, high-performance microelectronics |
Davis |
56
|
Pattern recognition
Holographic data storage
suite |
Ashley |
341
|
Performance analysis
A performance methodology for commercial servers
suite |
Kunkel |
851
|
Photo-processes
Chemical amplification resists: History and development within IBM
suite |
Ito |
119
|
Photoemission
X-ray spectro-microscopy of complex materials and surfaces
suite |
Stöhr |
535
|
Photoresists
Chemical amplification resists: History and development within IBM
suite |
Ito |
119
|
Physics
Contributions of IBM to laser science1960 to the present
suite |
Sorokin |
294
|
| Holographic data storage |
Ashley |
341
|
Physics, solid state
LSI yield modeling and process monitoring
suite |
Stapper |
112
|
| Scanning tunneling microscopy |
Binnig |
279
|
| Spatial variation of currents and fields due to localized scatterers in metallic conduction |
Landauer |
251
|
| The future of interconnection technology |
Theis |
379
|
| The future of magnetic data storage technology |
Thompson |
311
|
Programming, programs, and programming languages
Some studies in machine learning using the game of checkers
suite |
Samuel |
206
|
Quantum theory and effects
Ab initio computations in atoms and molecules
suite |
Clementi |
228
|
Reduced-instruction-set computers (RISC)
POWER3: The next generation of PowerPC processors
suite |
O'Connell |
873
|
| The evolution of RISC technology at IBM |
Cocke |
48
|
| The 801 minicomputer |
Radin |
37
|
Scanning tunneling microscopy
Hot-electron effects and oxide degradation in MOS structures studied with ballistic electron emission microscopy
suite |
Ludeke |
517
|
| Scanning tunneling microscopy |
Binnig |
279
|
Semiconductor devices
Controlled collapse reflow chip joining
suite |
Miller |
93
|
| Design and characteristics of n-channel insulated-gate field-effect transistors |
Critchlow |
70
|
| Finite-element analysis of semiconductor devices: The FIELDAY program |
Buturla |
142
|
| Hot-electron effects and oxide degradation in MOS structures studied with ballistic electron emission microscopy |
Ludeke |
517
|
Semiconductor technology
Low-temperature Si and Si:Ge epitaxy by ultrahigh-vacuum/chemical vapor deposition: Process fundamentals
suite |
Meyerson |
132
|
| The future of CMOS technology |
Isaac |
369
|
Signal processing
Parallel image processing with the block data parallel architecture
suite |
Alexander |
681
|
Silicon
The future of CMOS technology
suite |
Isaac |
369
|
Silicon dioxide
Hot-electron effects and oxide degradation in MOS structures studied with ballistic electron emission microscopy
suite |
Ludeke |
517
|
Solid logic technology
Solid Logic Technology: Versatile, high-performance microelectronics
suite |
Davis |
56
|
Spectroscopy
X-ray spectro-microscopy of complex materials and surfaces
suite |
Stöhr |
535
|
Sputtering
Application of rf discharges to sputtering
suite |
Koenig |
106
|
Storage (computer) devices and systems
A high track-density servo-access system for magnetic recording disk storage
suite |
Hoagland |
175
|
| Holographic data storage |
Ashley |
341
|
| The future of magnetic data storage technology |
Thompson |
311
|
| The MillipedeMore than one thousand tips for future AFM storage |
Vettiger |
323
|
| The Random-Access Memory Accounting Machine: I. System organization of the IBM 305 |
Lesser |
6
|
| The Random-Access Memory Accounting Machine: II. The magnetic-disk, random-access memory |
Noyes |
16
|
Surface science
Scanning tunneling microscopy
suite |
Binnig |
279
|
Transistors
Design and characteristics of n-channel insulated-gate field-effect transistors
suite |
Critchlow |
70
|
| The future of CMOS technology |
Isaac |
369
|
Transistors, bipolar
Silicon:germanium-based mixed-signal technology for optimization of wired and wireless telecommunications
suite |
Meyerson |
391
|
X-ray diffraction
Synchrotron X-ray scattering techniques for microelectronics-related materials studies |
Jordan-Sweet |
457
|