Pakistani-American Astrophysicist Dr. Nergis Mavalvala in Silicon Valley

Pakistani-American Astrophysicist Dr. Nergis Mavalvala, MIT professor and member of Nobel Prize winner LIGO team, visited Pakistani-American Community Center (PACC) in Silicon Valley on February 24, 2018. She was invited by PACC founder Mr. Mohammad Asghar Aboobaker to talk about her inspirational work and meet with the community members, particularly Pakistani-American children in the Valley.

Riaz Haq (R) with Dr. Nergis Mavalvala

Who is Nergis?

Nergis was born in Lahore and raised in Karachi before coming to the United States in 1986. She completed her Ph.D. in Physics at Massachusetts Institute of Technology (MIT) in 1997. She did her doctoral work under Dr. Rainer Weiss that included developing a prototype laser interferometer for detecting gravitational waves. Currently, she is Curtis and Kathleen Marble Professor of Astrophysics at the Massachusetts Institute of Technology (MIT), where she is also the Associate Head of the Department of Physics.

Gravitational Waves: 

In her brief presentation attended by over 100 people including boys and girls, Nergis explained Albert Einstein's gravitational wave theory and described her work in confirming the theory by detecting gravitational waves in Laser Interferometer Gravitational-Wave Observatory (LIGO) project.

LIGO - A Gigantic Interferometer

Gravitational waves are the disturbances in the fabric ("curvature") of spacetime generated by accelerated stars and propagate as waves outward from their source at the speed of light. She compared the gravitational waves with the curvature and the ripples produced in a trampoline when a heavy ball is placed in the middle and bounced on it.

All Stars Die:

Nergis explained that all stars, like the sun in our solar system, are born, grow and eventually die. Our sun too will die but she assured her audience that it won't happen for over a billion years. She described black holes as big stars whose light can not escape due to their massive gravity.  Huge amounts of energy are released when these massive stars collide with each other and new ones are born.

Dr. Mavalvala at PACC. Photo Credit: Nasreen Aboobaker

Neutron stars are created when giant stars die in supernovas and their cores collapse, with the protons and electrons essentially melting into each other to form neutrons.  Given the extremely small waves of about 1000 times smaller than a proton, the equipment required for detecting them must be extremely sensitive to tiny disturbances. LIGO equipment uses giant shock absorbers to eliminate extraneous perturbations that can alter the result.

Detected gravitational waves help scientists understand how large and how far away the colliding stars are, and allow them to recreate the moments before they collided. After such collisions, the measurements of optical light and electromagnetic waves fill in the blanks that gravitational waves can’t answer.

Dr. Mavalvala at PACC. Photo Credit: Nasreen Aboobaker

Origins of Gold: 

In answer to my question about the events detected by LIGO team, Nergis said the gravitational waves generated by these neutron star collisions occurred over a billion years ago at a distance of a billion light years.  From optical light and electromagnetic measurements after these collisions, the scientists were able to conclude that the resulting explosion from a neutron star merger produces heavy elements like gold, platinum, and uranium. These collisions occurred well after the Big Bang that is believed to have happened about 13.7 billion years ago.  Detecting events that occurred closer to the Big Bang would take much more sensitive equipment than currently available to LIGO team.

Audience at PACC. Photo Credit: Nasreen Aboobaker

Summary: 

Pakistani-American Astrophysicist Dr. Nergis Mavalvala, MIT professor and member of Nobel Prize winner LIGO team, visited Pakistani-American Community Center (PACC) in Silicon Valley on February 24, 2018. She was invited by PACC founder Mr. Mohammad Asghar Aboobaker to talk about her work and meet with the community members. Mavalvala and her fellow team members of the Laser Interferometer Gravitational-Wave Observatory (LIGO) project have opened new vistas in human pursuit to solve the mysteries of our universe. The collision of stars they have detected occurred over a billion years ago. With their new equipment they hope to go back further closer to the Big Bang to learn more about the creation of our universe.

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Comment by Ameer Alam on February 26, 2018 at 10:26am

A gem from Pakistan shines.

Comment by Riaz Haq on February 27, 2018 at 7:13am

I agree with you Ameer. 

Comment by Riaz Haq on July 1, 2018 at 5:22pm

Dr. Frank Postberg and #Pakistani scientist Dr. Nozair Khawaja of #Heidelberg University in #Germany have identified fragments of large organic molecules in ice grains ejected from geysers in #Saturn's moon #Enceladus' icy exterior. #Pakistan

https://nypost.com/2018/06/28/saturns-moon-could-be-harboring-alien...

It hasn’t even been a couple of days since the European Space Agency (ESA) and the National Aeronautics and Space Administration (NASA) announced the detection of complex organic material originating from a moon orbiting Saturn that can probably sustain some life form. And understandably, the euphoria and excitement of this discovery has been felt across the world, in scientific communities and among ordinary citizens.

But little is known about the Pakistani man who, along with Prof Dr Frank Postberg, has co-led a team of world-class scientists that published this groundbreaking research in the prestigious science journal, Nature.

Meet Dr Nozair Khawaja. Hailing from a small rural area of Wazirabad, Khawaja belonged to a middle-class family. He left home first to complete his Master’s degree in Space Science from the Punjab University, before heading to the Heidelberg University, Germany, to pursue a doctoral degree. And it was in Germany that he immersed himself in planetary research and began working on NASA’s space mission “Cassini towards Saturn.”

Eos presents the first interview Dr Khawaja has granted to any Pakistani publication.

Eos meets the young man from the small town of Wazirabad whose groundbreaking research into one of Saturn’s moons has been published in the prestigious science journal Nature on June 28

Dr Khawaja, the world is fascinated by your new discovery but what makes it most exciting for you?

Well, to me, everything is very exciting, but for public interest, I would like to summarise. We found large and complex organic molecules from Enceladus. Previously, the mass spectrometers (CDA & INMS) onboard the Cassini spacecraft found small organic compounds coming out from Enceladus’ subsurface ocean. But this discovery is the very first detection of very large and complex organics coming from the extraterrestrial ocean world.

So, can Enceladus be colonised for the survival of human civilisation in future?

Space colonisation or space settlement should be understood as permanent human habitation on any other planet. And since Enceladus is very far from the Sun and the surface temperature at Enceladus is extremely cold, approximately -200 °C, which means that human colonisation of Enceladus is not possible.

The large and complex organic molecules that we found could have been contributed by non-living or living sources. We cannot say for sure that the origin of these molecules is living organisms, nor can we say that that life exists on Enceladus. Instead, we proposed that these molecules originated from hydrothermal vents inside Enceladus. Such a hydrothermal system also exists in the Earth’s ocean where microbial life exists. Therefore, the origins of these molecules are undecided but they have astro-biological potential.

https://www.dawn.com/news/1417071

Comment by Riaz Haq on August 8, 2019 at 7:14am

Mansoor Ahmed - Ready for Your Close-Up?05.29.12


https://www.nasa.gov/centers/goddard/about/people/mahmed-og.html


Associate Director of the Astrophysics Project Division, Mansoor “Moonie” Ahmed, was born and raised in Peshawar, Pakistan in the northwest frontier area on the border with Afghanistan. “There was a movie house across the street from us and that’s how I got hooked on movies. At the age of six, I wanted to grow up to be an usher so I could see all the films for free,” remembers Ahmed.

Ahmed picked up his first video camera when his kids were born and began making movies of his friends and family, including local performing arts organizations. He had no formal training in cinematography. “That’s how I honed my filmmaking skills and learned editing techniques. I just watched a lot of films and read a lot of books on video making and directing,” he explains.


Mansoor "Moonie" Ahmed in his editing suite. Credit: M. Ahmed
From 1990 to about 1999, he was the Technical Director of the television show “Pakistan Vision,” which was produced by a friend. “I set up the studio in Burtonsville, Md., and then shot and edited the show.” Around 2003, this same friend was lamenting the passing of the heyday of the Pakistani movie industry in the 1960s and 70s and decided to produce a local, low-budget film to encourage Pakistani filmmakers to do the same. “I jumped on the idea. It was a chance for me to make a real film,” says Ahmed.

The result was a film called “Bhool,” which in Urdu, the language of Pakistan, means “An Error in Judgment.” Loosely based on an old Pakistani film, this version was modernized and focuses on women’s entitlement. “Everyone has an Achilles’ heel, a character flaw. This story is about a series of mistakes and misunderstandings stemming from everyone’s Achilles’ heel,” explains Ahmed. His cousin, an award-winning playwright living in Pakistan, wrote the screenplay. The actors were from the local performing arts groups Ahmed had been filming. “The leading lady had never acted before and she did the best job,” says Ahmed. “All of my family, including my wife and kids, and sisters-in-law, are extras in ‘Bhool.’ We all relied on friends and family to shoot.”

The film took five years to complete. “We were amateurs. We all had regular jobs, so we’d work on this film evenings and weekends. We were all volunteers,” says Ahmed. Their sole investor spent about $50,000 on cameras, lights, sound equipment, and a computer editing system. “Plus, he fed us.”

“Every scene had its own challenges and interests. Also, I had to change the actors’ mindset from being on the stage and using big movements to being on film and using more subtle movements,” explains Ahmed. He found editing to be the most interesting part of filmmaking. “The editing process allows you to create several options for how to move the story forward. The intellectual challenge is figuring out which one will work best with the audience. A technical challenge is creating a smooth looking scene using pieces taken from multiple takes of the same scene shot from different angles and perspectives. There are various reasons a scene may not be shot in one take. It could be the actor

Comment by Riaz Haq on December 11, 2020 at 8:18am

Very excited that two
@maxplanckpress
scientists are among the 2021 #LeibnizPreis recipients: our Vice President Asifa Akthar, MPI of Immunobiology & Epigenetics
@AsifaAkhtar1

@mpi_ie
& Volker Springel, MPI for Astrophysics. Congratulations!Partying faceGrinning facehttps://bit.ly/2VY5AX4
@dfg_public

https://twitter.com/maxplanckpress/status/1337056859400900611?s=20

---------------
Pakistan-born scientist to receive prestigious Leibniz Prize

https://www.brecorder.com/news/40040190/pakistan-born-scientist-to-...

Leibniz Prizes, most important research award in Germany for outstanding work from all scientific areas will be awarded on March 15 next year in a virtual ceremony.
The Gottfried Wilhelm Leibniz Prize has been awarded annually by the DFG since 1986.

Pakistan-born scientist Asifa Akhtar among 10 others will receive prestigious Leibniz Prizes next year, the committee announced on Thursday.

Leibniz Prizes, most important research award in Germany for outstanding work from all scientific areas will be awarded on March 15 next year in a virtual ceremony.

Asifa Akhtar is the vice president of The Max Planck Society. It is Germany’s most successful research organisation. Since its establishment in 1948, no fewer than 18 Nobel laureates have emerged from the ranks of its scientists, putting it on a par with the best and most prestigious research institutions worldwide.

Born in Karachi, she obtained her doctorate at the Imperial Cancer Research Fund in London, UK, in 1997. She then moved to Germany, where she was a Postdoctoral fellow at the European Molecular Biology Laboratory (EMBL) in Heidelberg and the Adolf-Butenandt-Institute in Munich from 1998 to 2001.

------------

Pakistan-born scientist becomes first woman to head section at renowned body

https://www.dawn.com/news/1569093

Pakistan-born scientist ​​​​​​​​Asifa Akhtar has become the first international female vice president of the biology and medicine section at Germany’s prestigious Max Planck Society.

The Max Planck Society is Germany’s most successful research organisation. Since its establishment in 1948, no fewer than 18 Nobel laureates have emerged from the ranks of its scientists, putting it on a par with the best and most prestigious research institutions worldwide.

Comment by Riaz Haq on June 11, 2023 at 7:20pm

Migration of academics: Economic development does not necessarily lead to brain drain

https://phys.org/news/2023-01-migration-academics-economic-necessar...

A team of researchers at the Max Planck Institute for Demographic Research (MPIDR) in Rostock, Germany, developed a database on international migration of academics in order to assess emigration patterns and trends for this key group of innovators. Their paper was published in PNAS on Jan. 18.

As a first step, the team produced a database that contains the number of academics who publish papers regularly, and migration flows and migration rates for all countries that include academics who published papers listed on the bibliographic database Scopus. The migration database was obtained by leveraging metadata of more than 36 million journal articles and reviews published from 1996 to 2021.

"This migration database is a major resource to advance our understanding of the migration of academics," says MPIDR Researcher Ebru Sanliturk. Data Scientist Maciej Danko adds: "While the underlying data are proprietary, our approach generates anonymized aggregate-level datasets that can be shared for noncommercial purposes and that we are making publicly available for scientific research."

MPIDR Researcher Aliakbar Akbaritabar explains how they processed the bibliographic data in order to receive information about the migration patterns of academics: "We used the metadata of the article title, name of the authors and affiliations of almost every article and review published in Scopus since 1996. We followed every single one of the roughly 17 million researchers listed in the bibliographic database through the years and noticed changes in affiliation and, by using that tactic we know how many academics left a given country every year."

The researchers' empirical analysis focused on the relationship between emigration and economic development, indicating that academic setting patterns may differ widely from population-level ones.

Previous literature has shown that, as low-income countries become richer, overall emigration rates initially rise. At a certain point the increase slows down and the trend reverses, with emigration rates declining.

This means that favoring economic development has the counterintuitive effect of initially increasing migration from low- and middle-income countries, rather than decreasing it.

Is this pattern also generally valid for migration of scientists?

Not really.

The researchers found that, when considering academics, the pattern is the opposite: in low- and middle-income countries, emigration rates decrease as the gross domestic product (GDP) per capita increases. Then, starting from around 25,000 US Dollars in GDP, the trend reverses and emigration propensity increases as countries get richer.

MPIDR Director Emilio Zagheni adds, "Academics are a crucial group of innovators whose work has relevant economic effects. We showed that their propensity to emigrate does not immediately increase with economic development—indeed it decreases until a high-income turning point and then increases. This implies that increasing economic development does not necessarily lead to an academic brain drain in low- and middle-income countries."

Unveiling these and related patterns, and addressing big scientific questions with societal implications, was possible only because of painstaking work in preparing this new global database of migration of academics. "We are putting the final touches on an even more comprehensive database, the Scholarly Migration Database, which will be released on its own website soon," says software developer Tom Theile.

Comment by Riaz Haq on September 29, 2023 at 5:20pm

Irfan Siddiqi Announced as Next Chair of Berkeley Physics | Physics


https://physics.berkeley.edu/news/irfan-siddiqi-announced-next-chai...

Berkeley Physics is pleased to announce Irfan Siddiqi as the next Chair of the Department, effective July 1, 2023.

Irfan joined the Berkeley Physics faculty as an Assistant Professor in 2006 and is currently a Professor of Physics, Professor of EECS, and a faculty scientist at Lawrence Berkeley National Laboratory (LBNL). He has been an active member of the faculty, serving as department summer chair from 2014-2018 and Vice Chair from Spring 2017-Summer 2018. In 2016 he received the UC Berkeley Distinguished Teaching Award, a prestigious honor for teaching and continued commitment to pedagogy. A trailblazer on the forefront of quantum physics, Irfan is Director of the Advanced Quantum Testbed, and was the founding director of the Quantum Systems Accelerator (QSA) at LBNL, which brings together dozens of scientists who are pioneers of many of today’s quantum capabilities.

Irfan is already hard at work assembling a strong faculty and staff leadership team to structure his vision for the department. We're certain that under Irfan’s leadership the Department will continue to thrive, and the Berkeley Physics community looks forward to working with him as he settles into his role as chair.

We cannot move forward without acknowledging the many successes of the outgoing Chair, James Analytis. During his 3 year term as Department Chair James served as an exceptional leader, navigating the challenges brought on by the pandemic and helping us stay connected at a time we were apart. Under James' leadership several wonderful new faculty members have joined the department, and the Pi2 Summer Scholar Program he leads has continued to grow, bringing valuable hands-on lab experience to our undergraduate students. James was responsible for creating a more equitable and inclusive community by collaborating with faculty, students, and staff to establish community principles in our department, and has spurred activity that will help generations of Berkeley physicists.

We thank James for his service to this department and welcome Irfan into his new role.

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