World's Best Scientists 2026 revealed!

D-Index & Metrics

Computer Science

D-Index
54
Citations
9033
World Ranking
4655
National Ranking
2160

Overview

What is he best known for?

The fields of study he is best known for:

  • Operating system
  • Central processing unit
  • Programming language

Gilbert Neiger mainly investigates Operating system, Virtual machine, Embedded system, Computer hardware and Hypervisor. His Operating system study frequently draws connections between adjacent fields such as Code. The various areas that he examines in his Virtual machine study include Identifier, Software, Full virtualization and Component.

The concepts of his Full virtualization study are interwoven with issues in Data diffusion machine and Host. He interconnects Code module, Value, Listing, Encryption and Key in the investigation of issues within Embedded system. His biological study spans a wide range of topics, including Database transaction and Kernel virtual address space.

His most cited work include:

  • Intel virtualization technology (657 citations)
  • Control over faults occurring during the operation of guest software in the virtual-machine architecture (220 citations)
  • Tracking operating system process and thread execution and virtual machine execution in hardware or in a virtual machine monitor (205 citations)

What are the main themes of his work throughout his whole career to date?

Gilbert Neiger focuses on Operating system, Virtual machine, Embedded system, Computer hardware and Hypervisor. Gilbert Neiger regularly ties together related areas like Interrupt in his Operating system studies. His work in Virtual machine addresses issues such as Full virtualization, which are connected to fields such as Data diffusion machine.

His study brings together the fields of Fault and Embedded system. His research integrates issues of Privilege level and Timer in his study of Hypervisor. His Virtualization study incorporates themes from Paging and Host.

He most often published in these fields:

  • Operating system (58.72%)
  • Virtual machine (33.62%)
  • Embedded system (22.13%)

What were the highlights of his more recent work (between 2015-2021)?

  • Operating system (58.72%)
  • Encryption (5.11%)
  • Computer network (10.21%)

In recent papers he was focusing on the following fields of study:

His main research concerns Operating system, Encryption, Computer network, Identifier and Virtual machine. Operating system is frequently linked to Instruction set in his study. His research in Encryption intersects with topics in Software, Key and Cryptography.

In Computer network, he works on issues like Memory address, which are connected to Hypervisor. The Virtual machine study combines topics in areas such as Virtualization and Page. His Physical address research includes elements of Address space and Host.

Between 2015 and 2021, his most popular works were:

  • Secure public cloud with protected guest-verified host control (26 citations)
  • Systems, methods, and apparatuses for heterogeneous computing (25 citations)
  • System for address mapping and translation protection (17 citations)

In his most recent research, the most cited papers focused on:

  • Operating system
  • Central processing unit
  • Programming language

Gilbert Neiger mainly focuses on Operating system, Host, Execution unit, Virtual machine and Virtualization. His work on Paging, Control unit and CPU cache is typically connected to Argument and Aside as part of general Operating system study, connecting several disciplines of science. His Execution unit research integrates issues from Memory address, User Privilege, Computer hardware and Page cache.

His work investigates the relationship between Virtual machine and topics such as Page table that intersect with problems in Hypervisor and Cloud computing. His Hypervisor study integrates concerns from other disciplines, such as Key and Encryption. His Virtualization research includes elements of Process, Scalability, Logical address, Address space and Container.

Best Publications

  • Intel virtualization technology

    R. Uhlig;G. Neiger;D. Rodgers;A.L. Santoni

  • Control over faults occurring during the operation of guest software in the virtual-machine architecture

    Steve Bennett;Andrew V. Anderson;Stalinselvaraj Jeyasingh;Alain Kagi

  • Virtual translation lookaside buffer

    Gilbert Neiger;Stephen Chou;Erik Cota-Robles;Stalinselvaraj Jeyasingh

  • Controlling access to multiple memory zones in an isolated execution environment

    Carl M. Ellison;Roger A. Golliver;Howard C. Herbert;Derrick C. Lin

  • Tracking operating system process and thread execution and virtual machine execution in hardware or in a virtual machine monitor

    Erik Cota-Robles;Sebastian Schoenberg;Stalinselvaraj Jeyasingh;Alain Kagi

  • Reclaiming existing fields in address translation data structures to extend control over memory accesses

    Richard Uhlig;Gilbert Neiger;Erik Cota-Robles;Stalinselvaraj Jeyasingh

  • Controlling access to multiple isolated memories in an isolated execution environment

    Roger Golliver;James Ii Sutton;Derrick Lin;Shreekant Thakkar

  • Authenticated code method and apparatus

    Andrew Glew;James Ii Sutton;Lawrence Ii Smith;David Grawrock

  • System and method to deprivilege components of a virtual machine monitor

    Andrew V. Anderson;Steven M. Bennett;Erik Cota-Robles;Alain Kägi

  • Platform and method for remote attestation of a platform

    Howard C. Herbert;David W. Grawrock;Carl M. Ellison;Roger A. Golliver

  • Controlling accesses to isolated memory using a memory controller for isolated execution

    Carl M. Ellison;Roger A. Golliver;Howard C. Herbert;Derrick C. Lin

  • Executing isolated mode instructions in a secure system running in privilege rings

    Carl M. Ellison;Roger A. Golliver;Howard C. Herbert;Derrick C. Lin

  • System and method for protection against untrusted system management code by redirecting a system management interrupt and creating a virtual machine container

    James Sutton;David Grawrock;Richard Uhlig;David Poisner

  • Virtualization event processing in a layered virtualization architecture

    Steven M. Bennett;Andrew V. Anderson;Gilbert Neiger;Dion Rodgers

  • Authenticated code module

    Andrew F. Glew;James A. Sutton;Lawrence O. Smith;David W. Grawrock

  • Address translation for input/output devices using hierarchical translation tables

    Ioannis Schoinas;Rajesh Madukkarumakumana;Gilbert Neiger;Richard Uhlig

  • Fault processing for direct memory access address translation

    Rajesh Madukkarumukumana;Ioannis T Schoinas;Ku-Jei King;Balaji Vembu

  • Method and apparatus for constructing host processor soft devices independent of the host processor operating system

    Erik Cota-Robles;Stephen Chou;Stalinselvaraj Jeyasingh;Alain Kagi

  • Handling faults associated with operation of guest software in the virtual-machine architecture

    Richard Uhlig;Andrew V. Anderson;Steve Bennett;Erik Cota-Robles

  • Processor supporting execution of an authenticated code instruction

    Andrew Glew;James Sutton;Lawrence Smith;David Grawrock

  • Methods and systems to control virtual machines

    Steve M. Bennett;Gilbert Neiger;Erik C. Cota-Robles;Stalinselvaraj Jeyasingh

Frequent Co-Authors

Richard Uhlig
Richard Uhlig Intel (United States)
Michael Kozuch
Michael Kozuch Intel (United States)
David M. Durham
David M. Durham Intel (United States)
Shay Gueron
Shay Gueron University of Haifa
Yen-Kuang Chen
Yen-Kuang Chen Alibaba Group (China)
Michael A. Rothman
Michael A. Rothman Intel (United States)
Vincent J. Zimmer
Vincent J. Zimmer Intel (United States)
Glenn J. Hinton
Glenn J. Hinton Intel (United States)

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