Age, Biography and Wiki

Edward Farhi (Edward Henry Farhi) was born on 26 June, 1952 in New York, U.S., is an Edward Henry Farhi is physicist. Discover Edward Farhi's Biography, Age, Height, Physical Stats, Dating/Affairs, Family and career updates. Learn How rich is he in this year and how he spends money? Also learn how he earned most of networth at the age of 71 years old?

Popular As Edward Henry Farhi
Occupation N/A
Age 71 years old
Zodiac Sign Cancer
Born 26 June, 1952
Birthday 26 June
Birthplace New York, U.S.
Nationality

We recommend you to check the complete list of Famous People born on 26 June. He is a member of famous with the age 71 years old group.

Edward Farhi Height, Weight & Measurements

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Edward Farhi Net Worth

His net worth has been growing significantly in 2023-2024. So, how much is Edward Farhi worth at the age of 71 years old? Edward Farhiā€™s income source is mostly from being a successful . He is from . We have estimated Edward Farhi's net worth, money, salary, income, and assets.

Net Worth in 2024 $1 Million - $5 Million
Salary in 2024 Under Review
Net Worth in 2023 Pending
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Timeline

1952

Edward Henry Farhi (born June 26, 1952 ) is a physicist working on quantum computation as a principal scientist at Google.

1978

Edward (Eddie) Farhi attended the Bronx High School of Science and obtained his B.A. and M.A. in physics at Brandeis University before getting his Ph.D. in 1978 from Harvard University under the supervision of Howard Georgi.

1982

He was then on the staff at the Stanford Linear Accelerator Center and at CERN in Geneva, Switzerland before coming to MIT, where he joined the faculty in 1982.

At MIT, he taught undergraduate courses in quantum mechanics and special relativity as well as freshman physics.

At the graduate level he taught quantum mechanics, quantum field theory, particle physics and general relativity.

2004

He was the director of the Center for Theoretical Physics at MIT from 2004 until 2016.

He made contributions to particle physics, general relativity and astroparticle physics before turning to his current interest, quantum computation.

In July 2004, he was appointed the Director of MIT's Center for Theoretical Physics.

Farhi was trained as a theoretical particle physicist but has also worked on astrophysics, general relativity, and the foundations of quantum mechanics.

His present interest is the theory of quantum computation.

As a graduate student, Farhi invented the jet variable "Thrust" which is used today at the Large Hadron Collider to describe how particles in high energy accelerator collisions come out in collimated streams.

He then worked with Leonard Susskind on grand unified theories with electro-weak dynamical symmetry breaking.

At CERN, he and Larry Abbott proposed an (almost viable) model in which quarks, leptons, and massive gauge bosons are composite.

At MIT, with Robert Jaffe, he worked out many of the properties of a possibly stable super dense form of matter called ``Strange Matter" and with Charles Alcock and Angela Olinto he studied the properties of ``Strange Stars", compact objects made of strange matter.

His interest then shifted to general relativity and he and Alan Guth studied the classical and quantum prospects of creating a new inflationary universe in a laboratory.

He and Guth, along with Sean Carroll, showed how building a time machine would require resources beyond what could ever be possible to obtain.

Since the late '90s, Farhi has been studying how to use quantum mechanics to gain algorithmic speedup in solving problems that are difficult for conventional computers.

He and Sam Gutmann pioneered the continuous time Hamiltonian based approach to quantum computation which is an alternative to the conventional gate model.

He and Gutmann then proposed the idea of designing algorithms based on quantum walks, which was used to demonstrate the power of quantum computation over classical.

They, along with Jeffrey Goldstone and Michael Sipser, introduced the idea of quantum computation by adiabatic evolution which generated much interest in the quantum computing community.

For example, the D-Wave machine is designed to run the quantum adiabatic algorithm.

2007

In 2007, Farhi, Goldstone and Gutmann showed, using quantum walks, that a quantum computer can determine who wins a game faster than a classical computer.

2010

In 2010, he along with Peter Shor and others at MIT introduced a scheme for Quantum Money which so far has resisted attack.

2014

In 2014 Farhi, Goldstone and Gutmann introduced the Quantum Approximate Optimization Algorithm (QAOA), a novel quantum algorithm for finding approximate solutions to combinatorial search problems.

Farhi and Harrow showed that the lowest depth version of the QAOA exhibits Quantum Supremacy which means that in worst case its output can not be simulated efficiently by a classical device.

The QAOA is viewed as one of the best candidates to run on noisy Intermediate-scale quantum (NISQ) devices which are coming online in the near future.

Farhi continues to work on quantum computing but keeps a close eye on particle physics and recent developments in cosmology.

2018

In 2018 he retired from his position as the Cecil and Ida Green Professor of Physics at the Massachusetts Institute of Technology.