Age, Biography and Wiki
Victor Veselago was born on 13 June, 1929 in Kichkas, Zaporozhye Oblast, Ukrainian SSR, Soviet Union, is a Soviet/Russian physicist. Discover Victor Veselago'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 89 years old?
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Age |
89 years old |
Zodiac Sign |
Gemini |
Born |
13 June 1929 |
Birthday |
13 June |
Birthplace |
Kichkas, Zaporozhye Oblast, Ukrainian SSR, Soviet Union |
Date of death |
15 September, 2018 |
Died Place |
Russian Federation |
Nationality |
Ukraine
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We recommend you to check the complete list of Famous People born on 13 June.
He is a member of famous with the age 89 years old group.
Victor Veselago Height, Weight & Measurements
At 89 years old, Victor Veselago height not available right now. We will update Victor Veselago's Height, weight, Body Measurements, Eye Color, Hair Color, Shoe & Dress size soon as possible.
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Dating & Relationship status
He is currently single. He is not dating anyone. We don't have much information about He's past relationship and any previous engaged. According to our Database, He has no children.
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Not Available |
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Not Available |
Victor Veselago Net Worth
His net worth has been growing significantly in 2023-2024. So, how much is Victor Veselago worth at the age of 89 years old? Victor Veselago’s income source is mostly from being a successful . He is from Ukraine. We have estimated Victor Veselago'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 |
Salary in 2023 |
Under Review |
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Not Available |
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Victor Veselago Social Network
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Timeline
Victor Georgievich Veselago (Виктор Гиоргиевич Веселаго; 13 June 1929 – 15 September 2018) was a Soviet Russian physicist, doctor of physical and mathematical sciences, and a university professor.
Victor Veselago attended Moscow University and graduated from there in 1952.
He received his PhD in 1959 for investigation of molecular spectra with radiospectropy.
In 1967, he was the first to publish a theoretical analysis of materials with negative permittivity, ε, and permeability, μ.
He published his seminal work in a paper entitled "''The Electrodynamics of Substances with Simultaneously Negative Values of ε and μ".
It was first published in Russian (1967), and was later translated into English (1968).
His published paper was key to the advancement of physics research in electrodynamics and optics.
It has been cited 4118 times by other scientific works, according to Cross ref and 15,378 times according to Google Scholar as of February 2024.
He received awards and continued to contribute to electrodynamics throughout his career.
In the senior years of his high school he was an avid ham radio amateur.
This hobby sparked an interest in the workings of electricity, and more generally, an interest in physics.
Veselago enrolled in the Physico-Technical Department, of M.V. Lomonosov Moscow State University.
This department had at that time was just recently opened at this university.
He matriculated for four years there.
These university years were the happiest time of his life.
Professor Mark Yefremovich Zhabotinsky supervised Veselago's project for his graduation diploma.
This same professor also helped him to build a foundation in radio electronics and electrodynamics.
Also, as a result of reading the book "What is radio?", which popularized the subject he became involved in the amateur field of Ham Radio.
Veselago then studied under the author of the book, Professor Semen Emmanuilovich Khaikin, for three summers at the P N Lebedev FIAN Radioastronomy Station in Crimea.
He also studied under Professor Sergei Mikhailovich Rytov, corresponding member of the USSR Academy of Sciences, who lectured on the theory of oscillations.
These three professors had a notable impact on Veselago.
It appears that the most significant event of his career, and the most important moment in his life was when he realized that materials with both negative permittivity and permeability are possible.
He was also on the advisory board of the peer reviewed journal Metamaterials, along with a number of other notable board members who have significantly contributed to metamaterial research.
He later received a Doctor of Science degree in Solid State Physics in 1974 for his investigation of solid states in magnetic fields.
The journal was first published in March, 2007.
In 2009, Victor Vesalgo won the C.E.K. Mees Medal from the Optical Society of America (OSA).
The recipient is awarded this medal because he or she "exemplifies the thought that 'optics transcends all boundaries,' interdisciplinary and international alike."
His first paper was "The Electrodynamics of Substances with Simultaneously Negative Values of ε and μ".
Up to this point, the refractive index was traditionally regarded as having only positive values.
In this paper he was able to show that refractive index may also be negative.
He hypothesized that negative refraction can occur if both the (electric) permittivity and the magnetic permeability of a material are negative.
This prediction was confirmed 33 years later when David Smith et al., created a composite material with negative refractive index.
Veselago also predicted a flat plate consisting of these materials will produce some curved lens properties.
Sir John Pendry demonstrated this prediction in the lab and noted greatly improved optical resolution.
This it has been named the Veselago lens.
After Smith's and Pendry's accomplishments with metamaterials, Veselago realized that the most important contribution of his original paper is not that a composite material can be designed to produce a negative refraction, but that a composite material can be designed to produce any value for permittivity and permeability.
At least a part of his research goals was then to critically reconsider all formulas of classical electrodynamics that involve permittivity, permeability or refractive index.
The fact that prior research is based on positive values for these parameters leads to erroneous solutions when negative values are considered or researched.
He stated that many of these formulas need to be corrected.
Veselago perceived that the next big breakthrough with metamaterials will be the fabrication of transparent low-absorption metamaterials with negative refraction in the visible spectrum range.