H-Index & Metrics Best Publications

H-Index & Metrics

Discipline name H-index Citations Publications World Ranking National Ranking
Computer Science D-index 31 Citations 5,759 279 World Ranking 7813 National Ranking 226

Overview

What is she best known for?

The fields of study she is best known for:

  • Cryptography
  • Algebra
  • Programming language

Combinatorics, Hadamard transform, Hadamard matrix, Theoretical computer science and Algorithm are her primary areas of study. The concepts of her Combinatorics study are interwoven with issues in Square matrix, Order and Ordered pair. Her work on Hadamard code as part of general Hadamard transform study is frequently connected to Interference, therefore bridging the gap between diverse disciplines of science and establishing a new relationship between them.

Her Hadamard matrix research incorporates elements of Weighing matrix and Conjecture. Jennifer Seberry has included themes like Ciphertext, Cryptography, Hash function and Differential cryptanalysis, Higher-order differential cryptanalysis in her Theoretical computer science study. Her Hadamard's inequality study frequently links to adjacent areas such as Discrete mathematics.

Her most cited work include:

  • Orthogonal Designs: Quadratic Forms and Hadamard Matrices (364 citations)
  • Hadamard matrices, Sequences, and Block Designs (222 citations)
  • Fundamentals of Computer Security (221 citations)

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

Her primary scientific interests are in Combinatorics, Discrete mathematics, Hadamard transform, Order and Hadamard matrix. Her Combinatorics research includes elements of Matrix and Type. Her research in Discrete mathematics intersects with topics in Zero, Structure, Algebra and Autocorrelation.

Her studies in Hadamard transform integrate themes in fields like Algorithm and Pure mathematics. Her Order research integrates issues from Set and Integer. Her study in Complex Hadamard matrix, Hadamard's inequality, Hadamard's maximal determinant problem, Paley construction and Hadamard three-lines theorem are all subfields of Hadamard matrix.

She most often published in these fields:

  • Combinatorics (40.64%)
  • Discrete mathematics (25.53%)
  • Hadamard transform (21.06%)

What were the highlights of her more recent work (between 2007-2021)?

  • Combinatorics (40.64%)
  • Hadamard transform (21.06%)
  • Algorithm (10.85%)

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

Jennifer Seberry mostly deals with Combinatorics, Hadamard transform, Algorithm, Discrete mathematics and Matrix. The study incorporates disciplines such as Orthogonal matrix, Hadamard matrix, Complex Hadamard matrix and Order in addition to Combinatorics. Her research integrates issues of Arithmetic and Pure mathematics, Conjecture in her study of Hadamard transform.

Her study in Algorithm is interdisciplinary in nature, drawing from both Byte and Cipher. Her work deals with themes such as Structure and Column, which intersect with Discrete mathematics. Her biological study spans a wide range of topics, including Hadamard's maximal determinant problem and Hadamard's inequality.

Between 2007 and 2021, her most popular works were:

  • The Theory of Quaternion Orthogonal Designs (67 citations)
  • Adaptively Secure Identity-Based Broadcast Encryption With a Constant-Sized Ciphertext (32 citations)
  • Extended cubes: enhancing the cube attack by extracting low-degree non-linear equations (18 citations)

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

  • Cryptography
  • Algebra
  • Programming language

Her scientific interests lie mostly in Combinatorics, Algorithm, Pure mathematics, Hadamard transform and Discrete mathematics. Her Combinatorics study combines topics from a wide range of disciplines, such as Matrix, Order and Order. Her Order study combines topics in areas such as Minor, Research software, General theorem, Eigenvalues and eigenvectors and Integer.

The Discrete mathematics study combines topics in areas such as Key, Algebraic number, Speedup and AES implementations. Her study on Block cipher also encompasses disciplines like

  • Side channel attack, which have a strong connection to Ciphertext-only attack, Related-key attack, Differential cryptanalysis, Slide attack and Fluhrer, Mantin and Shamir attack,
  • Ciphertext which is related to area like Cryptography. Her Circulant matrix research is multidisciplinary, incorporating perspectives in Weighing matrix, Construction method and Combinatorial design.

This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.

Best Publications

Orthogonal Designs: Quadratic Forms and Hadamard Matrices

A. V. Geramita;Jennifer Seberry.
(1979)

595 Citations

Hadamard matrices, Sequences, and Block Designs

Jennifer Seberry;Mieko Yamada.
(1992)

456 Citations

Fundamentals of Computer Security

Josef Pieprzyk;Jennifer Seberry;Thomas Hardjono.
(2003)

397 Citations

HAVAL - A One-Way Hashing Algorithm with Variable Length of Output

Yuliang Zheng;Josef Pieprzyk;Jennifer Seberry.
theory and application of cryptographic techniques (1992)

334 Citations

Cryptography: An Introduction to Computer Security

Jennifer Seberry;Josef Pieprzyk.
(1988)

324 Citations

Advances in Cryptology — AUSCRYPT '92

Jennifer Seberry;Yuliang Zheng.
(1993)

249 Citations

LOKI—a cryptographic primitive for authentication and secrecy applications

Lawrence Brown;Josef Pieprzyk;Jennifer Seberry.
international cryptology conference (1990)

194 Citations

Nonlinearity and propagation characteristics of balanced Boolean functions

Jennifer Seberry;Xian-Mo Zhang;Yuliang Zheng.
Information & Computation (1995)

144 Citations

Nonlinearly balanced Boolean functions and their propagation characteristics

Jennifer Seberry;Xian-Mo Zhang;Yuliang Zheng.
international cryptology conference (1994)

138 Citations

Improving Resistance to Differential Cryptanalysis and the Redesign of LOKI

Lawrence Brown;Matthew Kwan;Josef Pieprzyk;Jennifer Seberry.
international cryptology conference (1991)

130 Citations

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