Rafi Muhammad Chaudhry

From Bharatpedia, an open encyclopedia


Rafi Muhammad Chaudhry
File:Professor Rafi Muhammad Chaudhry.jpg
Born
Rao Rafi Muhammad

July 1903 (1903-07)
Died4 December 1988(1988-12-04) (aged 85)
Lahore, Punjab, Pakistan
Alma materAligarh Muslim University
University of Cambridge
Known forGamma and beta decay, and his work in atomic and nuclear physics in Pakistan
fission energy research
Awards
Scientific career
FieldsNuclear physics
InstitutionsPakistan Atomic Energy Commission (PAEC)
Pakistan Institute of Nuclear Science and Technology (PINSTECH)
Government College University (GCU)
High Tension Laboratory (HTL)
Aligarh Muslim University
University of Birmingham
University of California
Atomic Energy Research Establishment (AERE)
Doctoral advisorErnest Rutherford
Doctoral studentsTahir Hussain
Other notable studentsSamar Mubarakmand
Noor Muhammad Butt

Rafi Muhammad Chaudhry (Urdu: رفیع محمد چوہدری‎) FPAS HI, NI, SI, Skdt (1 July 1903 – 4 December 1988) best known as R. M. Chaudhry, was a Pakistani nuclear physicist and a professor of particle physics at the Government College University.[1] His teaching and instructions on modern physics influenced many of his student to pursue career in physics who regard him as one of the key architects of having been the pioneer of experimental nuclear physics research in Pakistan [2] and, along with Abdus Salam and Ishrat Hussain Usmani, one of the main creators of Pakistan's nuclear weapons research program in the 1970s. Chaudhry, who served as professor of nuclear physics at Government College University, was later referred to by Dr. Samar Mubarakmand, one of his students, as "the true father of the nuclear weapons program of Pakistan ".[3]

Early life and education[edit]

Chaudhry was born in 1903 to a middle class Rajput family (Rao) in Kahnaur, a small village in Rohtak district of Eastern Punjab.[4] He passed the university entrance exam with highest marks and earned a scholarship awarded by the Viceroy Rufus Isaacs, 1st Marquess of Reading. He used the scholarship to enroll as a student of chemical engineering at Aligarh University in 1923,[5] but after taking an engineering physics course, he decided to change his focus to thermodynamics and multivariable calculus.[5] He was successful as a physics student, earning the respect of his peers and professors.[4]

In 1927, Chaudhry took his BSc in Experimental physics, followed by his 1929 MSc in physics with First Class Honours.[4] The same year, Chaudhry gained attention from Hamidullah Khan, the Nawab of Bhopal of princely state of Bhopal, who awarded him a science scholarship for higher studies.[4] Under that scholarship, Chaudhry travelled to United Kingdom to study for his doctoral degree. Chaudhry joined the Cavendish Laboratory of the University of Cambridge. At Cambridge, Chaudhry studied Calculus of mathematical Integrals, and learned Tensor calculus, quantum physics, and general relativity under Nobel laureate in Chemistry Ernest Rutherford.[5] At Cavendish, he studied with Mark Oliphant, who particularly influenced him to study nuclear physics. Chaudhry and Oliphant carried out research in artificial disintegration of the atomic nucleus and positive ions. In 1933, Chaudhry earned his D.Phil in Nuclear physics under Ernest Rutherford. He then returned to India.[4]

Professorship in Europe[edit]

At age 30, Chaudhry moved to Lahore and took an academic professorship in physics at the Lahore Islamia College.[4] In 1935, he became Chairman of Department of Physics there, remaining in that position until 1938. In 1938, Chaudhry moved back to Aligarh Muslim University (AMU) to teach physics, again becoming head of his department.[4] In 1944, Chaudhry was contacted by Mark Oliphant, who offered him an opportunity to return to the Cavendish Laboratory. In response, Chaudhry moved to United Kingdom, where he joined Oxford University's Nuffield College and was appointed a Nuffield Fellow.[4] Along with Oliphant and Homi J. Bhabha, Chaudhry created a group of physicists that did research in theories of Gamma and Beta decay, as well as researching the neutrino—postulated by Wolfgang Pauli in 1930—Compton scattering, and the behaviour of slow neutrons during the atomic bombardment process.

On the recommendation of Oliphant, Chaudhry joined Atomic Energy Research Establishment to continue research in nuclear physics. There, he established a laboratory to conduct research in nuclear power plants. He applied his research work to the behaviour of slow neutrons in research nuclear reactors and set about identifying the heavier particles emitted by alpha decay and alpha decay's extension to the Cluster decay.[citation needed]

Return to India[edit]

In 1948, months after the independence of Pakistan, while in Great Britain, he was contacted by Indian Premier Jawaharlal Nehru. Nehru offered him a senior position at the Physics Laboratory of India.[4] Chaudhry consulted mentor Mark Oliphant about the offer, and Oliphant wrote letters to Founder of Pakistan Muhammad Ali Jinnah, Governor-General. The letter encouraged Jinnah to engage his country in research in nuclear technology, particularly nuclear physics.[4] According to Oliphant, no other Muslim scientist was available in the South Asia except Dr. Chaudhary who could prove useful for the newly born country in the field of Nuclear Technology. However, Nehru came to know of this development, and personally offered him a position of "Deputy Directorship" of Physics Laboratory of India.[4]

While Chaudhry was considering the offers, Jinnah sent him a letter where Jinnah had personally requested him to come to Pakistan, and join Government College University. Despite a personal phone call from Nehru urging him to come to India, Chaudhry chose the Pakistani position. In 1948, Rafi Muhammad Chaudhry migrated to Pakistan and joined Government College University as head of the Physics Department and a professor of nuclear physics.

Pakistan[edit]

Following his settlement in Pakistan, the Government of Pakistan asked him to engage research in physics at the Government College University. In 1952, Chaudhry established the "High Tension Laboratory" (now "Centre for Advanced Studies in Physics") as an offshoot of the Physics Department at Government College.[6] Chaudhry was an instrumental figure in the installation of the 1.2 MeV Cockcroft-Walton accelerator in the High Tension Laboratory (HTL) in 1954 for carrying out basic research in atomic and nuclear physics.[7] Chaudhry led projects that investigated fundamental problems of physics concerning gaseous diffusion, ion and electron impact phenomena, nuclear physics, radioactivity, and cosmic rays.[7] The research carried out at the laboratory resulted in research publications in Nature and it was visited by the Prince Philip, Duke of Edinburgh in 1958.[7] At HTL, Chaudhry influenced many physicists who studied under him, such as N. M. Butt and Samar Mubarakmand, Abdul Majid who became the senior scientists in Pakistan's indigenous nuclear and space development. After retirement from Government College, Lahore in 1958 he continued as Director of High Tension Laboratory until 1965.

Pakistan Atomic Energy Commission[edit]

In 1960, Chaudhry joined the Pakistan Atomic Energy Commission, where he engaged nuclear technology research. He was the first director of the Pakistan Institute of Nuclear Science and Technology (PINSTECH), and was instrumental in the installation of nuclear particle accelerator there. Chaudhry published 42 research papers while at PINSTECH, and due to the sensitivity of the work, the papers were highly classified. Chaudhry was an administrative and influential figure in the establishment of PARR-I reactor as well, as being part team that supervised the first reactor criticality at PINSTECH. In 1967, Rafi supervised the team of scientists at PINSTECH that successfully produced the first batch of radioisotopes.

1971 war and atomic bomb project[edit]

In 1968, Chaudhry went to United States with a fellowship awarded by University of California at Berkeley. There, he was joined by Hafeez Qureshi, a mechanical engineer who built weapons in the 1970s. In 1969, Chaudhry moved to the University of Chicago where he did his research at Argonne National Laboratory (ANL). In 1970, Chaudhry and Qureshi visited the National Museum of the United States Air Force where they saw the actual design of Fat Man – an implosion device built during the World War II.[citation needed]

In 1971, after the Indo-Pakistani War of 1971, Chaudhry returned to Pakistan and joined Government College University. In January 1972, Chaudhry represented the HTL's delegation at the Multan Meeting, convened by Zulfikar Ali Bhutto.[citation needed] During the meeting, Chaudhry spoke, as he said: I was perhaps the only one among the scientists who had seen an actual atom bomb.[citation needed] Chaudhry was immediately posted at PINSTECH institute, where he was made director of Radiation Physics Division (RPD). Chaudhry was among the senior scientists that built the first nuclear pile PARR-II reactor at Pinstech.[citation needed] Under Chaudhry, the RPD scientists engaged in research in radiation physics.

Post career[edit]

In 1973, Rafi moved back to High Tension Laboratory at GCU Lahore. In 1975, he joined the Centre for Solid State Physics at the Punjab University and continued to work there as an honorary Professor; he was made Professor Emeritus in 1977. Chaudhry peacefully died at the age of 85 in Lahore.

Recognition and honours[edit]

Chaudhry was an influential figure at the Government College University and his work in PAEC and PINSTECH has been far reaching. In 1998, on personal recommendation of Noor Muhammad Butt, the Government of Pakistan awarded him Nishan-e-Imtiaz – the first high civil award.[citation needed] In 2004, the "High Tension Laboratory (HTL)" was renamed as "Rafi Chaudhry High Tension Laboratory" by the then-President of Pakistan, General Pervez Musharaff[8] in the honour of Chaudhry. Due to his work, scientists at PINSTECH named him the "Father of the Pakistan's nuclear weapons programme".[citation needed]

Family of physicists[edit]

Dr Rafi had nine children, all of whom became physicists. The most distinguished ones are Dr. Anwar Chaudhri, currently working in Germany, and Dr. Munawar Chaudhri, working at the Cavendish Laboratory, Cambridge, UK.

Awards[edit]

Institutes named after Rafi Muhammad Chaudhry[edit]

  • Rafi Chaudhry High Tension Laboratory, Government College University

References[edit]

  1. GCU, Government College University, Lahore (4 September 2009). "Dr. Rafi Muhammad Chaudhri Chair in Physics". Chief Librarian GC University Library, Lahore. GC University.{{cite web}}: CS1 maint: multiple names: authors list (link)
  2. Haq, Prof. M. Ikramul (17 January 2004). "Remembering Dr Rafi Chaudhry". Dawn.
  3. A.Q. Khan and Samar Mubarakmand – Krepon – Arms Control Wonk
  4. 4.00 4.01 4.02 4.03 4.04 4.05 4.06 4.07 4.08 4.09 4.10 NPT, Nazaria-i-Pakistan Trust (d). "Dr. Rafi Mohammad Chaudhary [1903–1988]". Nazaria-i-Pakistan Trust. Nazaria-i-Pakistan Publications. Archived from the original on 13 January 2010. {{cite web}}: Check date values in: |date= (help)
  5. 5.0 5.1 5.2 Hameed A. Khan (2006). "Physics in Developing Countries – Past, Present & Future" (PDF). {{cite journal}}: Cite journal requires |journal= (help)
  6. Ashok Kapur, "1953–59: The Origins and Early History of Pakistani Nuclear Activities," Pakistan's Nuclear Development, (New York: Croom Helm, 1987), p. 36.
  7. 7.0 7.1 7.2 GCU, Government College University. "Center For Advance Studies in Physics (CASP)". Government College University press.
  8. "DAWN - Letters; 17 January, 2004". Archived from the original on 17 January 2004.

Template:Military of Pakistan

Information red.svg
Scan the QR code to donate via UPI
Dear reader, We kindly request your support in maintaining the independence of Bharatpedia. As a non-profit organization, we rely heavily on small donations to sustain our operations and provide free access to reliable information to the world. We would greatly appreciate it if you could take a moment to consider donating to our cause, as it would greatly aid us in our mission. Your contribution would demonstrate the importance of reliable and trustworthy knowledge to you and the world. Thank you.

Please select an option below or scan the QR code to donate
₹150 ₹500 ₹1,000 ₹2,000 ₹5,000 ₹10,000 Other