---
title: "Remembering Cleve Moler"
description: "Matthew Fricke remembers Cleve Moler — creator of MATLAB, former UNM Computer Science chair, and a giant of high-performance computing — who died on May 20, 2026, at 86."
type: News
tags:
  - News
generated:
  by: "claude/fable-5"
  at: "2026-09-05T00:00:00Z"
sources:
  - id: carc-web
    resource: "https://carc.unm.edu/news--events/News/cleve-moler.html"
    title: "Remembering Cleve Moler (carc.unm.edu, published 2026-09-04)"
    author: "team:unm-carc"
---

# Remembering Cleve Moler

<p class="carc-byline">By Matthew Fricke</p>

The Center for Advanced Research Computing (CARC) joins the University of
New Mexico and the worldwide research computing community in mourning the
loss of Dr. Cleve Moler, former Chair of Computer Science and a giant of
high-performance computing (HPC), who died on May 20, 2026, at the age of
86 from Parkinson's disease.

![Cover of the EISPACK Guide, second edition — Matrix Eigensystem Routines, by Smith, Boyle, Dongarra, Garbow, Ikebe, Klema and Moler — stamped "Cleve Moler, Department of Mathematics, University of New Mexico"](/assets/cleve-moler-eispack-guide.jpg)

It is difficult to write an article in memoriam without feeling that it is
insufficient under any circumstances. But that is especially true when
writing about someone who was a towering figure in his field, a beloved
elder statesman of the community, and who was a joy to be around. Few
individuals have had a greater impact on modern scientific and
high-performance computing, and few are remembered with such affection by
their colleagues. Moler's work enabled a revolution in computational
solutions to linear algebra problems and made it possible to scale those
calculations to the world's largest supercomputers. Just as importantly, he
helped build a community of researchers and practitioners who continue to
build on his work and remember him fondly.

Linear algebra is a cornerstone of scientific computing, so enabling
efficient and scalable numerical solutions had an enormous impact on modern
computing and especially HPC. From climate modeling and aerospace
engineering to genomics and artificial intelligence, researchers continue to
rely on software, algorithms, and mathematical techniques developed by Moler
and his students while at UNM. It is hard to think of a field of
supercomputing that didn't benefit from his work.

So foundational were these algorithms that for decades the largest
supercomputers in the world were ranked by how fast they could run them. The
result was the [TOP500](https://www.top500.org/){target=_blank}, a list so
influential that it became a significant element in multi-billion-dollar
purchasing decisions. To this day supercomputing vendors promoting their
systems lead with how fast their machines can run the linear algebra
benchmarks Moler and his students developed.

![Cover of the MATLAB Users' Guide, a UNM Department of Computer Science technical report by Cleve Moler dated August 1982](/assets/cleve-moler-matlab-users-guide-1982.jpg)

At the other end of the scale, UNM undergraduates preparing to compete in
this year's international Student Cluster Competition in Chicago encounter
Moler's libraries in their very first HPC assignments. Every lecture I give
in my HPC courses at UNM has at least a few slides on Cleve and his work. It
is often at that moment that students begin to understand the pivotal role
New Mexico has played in the history of scientific and high-performance
computing. They are often surprised to learn that software foundations they
still use today were developed right here in Albuquerque. More than one New
Mexico student has remarked that the connection helped inspire them to
pursue a career in supercomputing.

Though usually hidden behind the scenes, Moler's code and algorithms remain
a familiar part of everyday life at CARC and every other supercomputing
center. When we compile scientific software for researchers, the libraries
Moler helped create often form part of the foundation, providing the linear
algebra routines required by applications across science and engineering.
To computational scientists, these libraries are much like the periodic
table is to chemistry: they provide a common foundation upon which a
remarkable range of applications are built.

While Moler was helping establish the foundations of scientific and parallel
computing, he was working on a related project at UNM. He wanted to give
students a user-friendly way to run the linear algebra libraries he was
writing. The result was the Matrix Laboratory, better known as
[MATLAB](https://mathworks.com/){target=_blank}. By his own account, the
hard-core computer scientists in his numerical analysis classes were not
impressed, but the engineering students who had to use linear algebra for
control theory, structural analysis, circuit design, signal processing,
aerospace engineering, and fluid dynamics on a daily basis loved it. What
began as a teaching tool in Moler's classes grew into software used by
millions of engineers and scientists around the world. Today, MATLAB has
more than four million users and is one of the most widely used software
packages on CARC systems.

Moler's influence extended beyond the algorithms and software systems he
developed. He built a community of collaborators and former students. Among
his students at UNM was Jack Dongarra, who received the ACM A.M. Turing
Award in 2021, often called the Nobel Prize of Computer Science, for his
work on high-performance linear algebra libraries.

![Jack Dongarra, Cleve Moler, Pete Stewart and Jim Bunch in 1978, sitting on the back of a car whose New Mexico license plate reads LINPACK](/assets/cleve-moler-dongarra-stewart-bunch-1978.jpg)

Professor Emeritus Ed Angel, who succeeded Moler as chair of the department,
remembered him as both a friend and an extraordinary leader. Reflecting on
the formative years of the department, Angel wrote that as chair Moler's
"warmth and outgoing nature led to a department that was collegial,
academic-politics free, encouraged interactions with others, was run by
consensus and valued both teaching and research."

"Cleve leaves an amazing legacy. MATLAB started as something he did for his
students, became a product that is used by millions and spawned a company
that employs thousands. But to me his legacy is his friendship and a CS
department that values both quality and collegiality." In recognition of
Moler's legacy, UNM established the Cleve Moler and MathWorks Endowed Chair
in Mathematical and Engineering Software in 2024.

That collegiality was evident at every conference he attended. Despite his
outsized influence on modern computing, Cleve was always happy to talk with
anyone he encountered, whether it was a student wandering the vast
conference trade floor with no idea who they were speaking to or a
star-struck junior faculty member. In his later years, when he attended
conferences in a wheelchair, he was still quick to pull someone aside and,
with a barely suppressed mischievous grin, ask:

"How do you convert from C to MATLAB? Add a f\*\*king one!"\*

What I loved about that terrible joke was how much Cleve delighted in
telling it and how uproariously he laughed at his own punchline. He enjoyed
what he did from start to finish. From Caltech student to the big cheese of
numerical computing, he was clearly having a blast the whole way, and his
enthusiasm was infectious.

When he was unable to attend last year's Supercomputing Conference because
of ill health, his absence was immediately felt. He had been a reassuring
and joyful presence there for so many years that the conference no longer
felt quite the same without him. I will think of him whenever I use the
numerical software he and his collaborators wrote, still quietly doing its
work beneath so much of modern scientific computing.

We extend our deepest condolences to Cleve's family, friends, colleagues,
former students, and the many researchers whose work was enabled by his
contributions. He will be missed.

*\*MATLAB, like FORTRAN, is 1-indexed while C is 0-indexed.*
