Categories
Earth & Climate Energy & Matter Feature Learning & Education Researcher news

Exploring the mysteries of the universe: Reality in the Shadows

New knowledge has caused us to reconsider many previous conclusions about what the universe is and how it works.

Despite centuries of scientific advancements, there is much about the universe that remains unknown. New knowledge and discoveries in the last 20 years have challenged previously accepted ideas and theories that were once regarded as scientific truth and have subjected them to increasing scrutiny.

These additions to our knowledge have caused scientists to reconsider many previous conclusions about what the universe is and how it works.

“Reality in the Shadows”” or “What the Heck’s the Higgs?” is a new book that explores the concepts that shape our current understanding of the universe and the frontiers of our knowledge of the cosmos.

The authors — two physicists and an engineer — tell us in a manner that non-scientists can readily follow, why studies have moved to superstring theory/M-theory, ideas about extra dimensions of space, and ideas about new particles in nature to find answers. It also explores why these ideas are far from established as accurate descriptions of reality.

“Our book explains how we know what we know about the universe, what we don’t know, and what we wish we did know,” said co-author Stephen Sekula, an associate professor of Physics at SMU. A physicist, Sekula conducts research into the Higgs Boson at the energy frontier on CERN’s ATLAS Experiment.

The book was initiated by Frank Blitzer, an engineer who participated on national space programs like Apollo and Patriot, several years ago, Sekula said. He was joined by co-author S. James Gates Jr., well known for his work on supersymmetry, supergravity and superstring theory, a few years ago.

“Frank and Jim sought additional input to help complete the book, and serendipitously Frank’s grandson, Ryan, was an SMU undergraduate and Hunt Scholar who helped connect them to me,” Sekula said. “After over an additional year of work, the book was completed.”

The foundations of modern physics rest on ideas that are over 100 years old and battle-tested, Sekula said.

“But nature has offered us new puzzles that have not yet been successfully explained by those ideas,” he added. “Perhaps we don’t yet have the right idea, or perhaps we haven’t searched deep enough into the cosmos. These are exciting times, with opportunities for a new generation of physicists who might crack these puzzles. Our book will help a curious reader to see the way in which knowledge was established, and encourage them to be engaged in solving the new mysteries.”

“Reality in the Shadows,” available through YBK Publishers, describes how humanity came to learn the workings of the universe as groundwork for the science that found the Higgs particle. Now scientists are hunting for the explanations for dark matter and the accelerated expansion of the cosmos, as well as for the many new questions the Higgs Boson itself has raised.

Scientists have recently discovered colliding black holes and neutron stars, that there is more non-luminous matter (dark matter) in the universe than the ordinary stuff of everyday life, and that the universe seems to grow larger each second at a faster and faster rate. Readers will learn how scientists discern such features of the universe and begin to see how to think beyond what is known to what is not yet known.

Throughout the book are descriptions of important developments in theoretical physics that lead the reader to a step-by-step understanding.

Sekula teaches physics and conducts research at ATLAS. He contributed to the measurement of decay modes of the Higgs boson and to the measurement of its spin-parity quantum numbers. Complementary to these efforts, he has worked with colleagues on the ATLAS Experiment to search for additional Higgs bosons in nature, providing intellectual leadership and direct involvement in several searches.

Gates was named 2014 “Scientist of the Year” by the Harvard Foundation. He was elected to the prestigious National Academy of Sciences in 2013 and received the 2013 National Medal of Science, the highest recognition given to scientists by the United States.

Gates has been featured on many TV documentary programs on physics, including “The Elegant Universe,” “Einstein’s Big Idea,” “Fabric of the Cosmos” and “The Hunt for the Higgs.” His DVD series, “Superstring Theory: The DNA of Reality,” makes the complexities of unification theory comprehensible.

Blitzer has more than 50 years of experience in engineering, program management, and business development and participated on national space programs, and The Strategic Defense Initiative (SDI), holding several patents in guidance and control. He has spent more than 20 years in independent research of the subject of the book.

Categories
Culture, Society & Family Energy & Matter Health & Medicine Learning & Education Researcher news SMU In The News Videos

Daily Planet: Star Wars come to life in SMU chemist’s invention

Long ago, sort of, scenes from Star Wars triggered a child’s imagination, so that today it’s informed one of his research goals as a chemist.

Discover Canada’s science magazine show Daily Planet reported on the research of SMU organic chemist Alex Lippert, an assistant professor in the Department of Chemistry in SMU’s Dedman College of Humanities and Sciences.

Lippert’s team develops synthetic organic compounds that glow in reaction to certain conditions. He led his lab in developing a new technology that uses photoswitch molecules to craft 3-D light structures — not holograms — that are viewable from 360 degrees. An economical method for shaping light into an infinite number of volumetric objects, the technology will be useful in a variety of fields, from biomedical imaging, education and engineering, to TV, movies, video games and more.

For biomedical imaging, Lippert says the nearest-term application of the technique might be in high-volume pre-clinical animal imaging, but eventually the technique could be applied to provide low-cost internal imaging in the developing world, or less costly imaging in the developed world.

The Daily Planet segment aired Dec. 12, 2017.

Lippert’s lab includes four doctoral students and five undergraduates who assist in his research. He recently received a prestigious National Science Foundation Career Award, expected to total $611,000 over five years, to fund his research into alternative internal imaging techniques.

NSF Career Awards are given to tenure-track faculty members who exemplify the role of teacher-scholars through outstanding research, excellent education and the integration of education and research in American colleges and universities.

Lippert joined SMU in 2012. He was previously a postdoctoral researcher at the University of California, Berkeley, and earned his Ph.D. at the University of Pennsylvania, and Bachelor of Science at the California Institute of Technology.

Watch the full Dec. 12 show.

Categories
Culture, Society & Family Economics & Statistics Feature Researcher news

SMU economist wins $50,000 “budding genius” prize with highly cited corruption research

Serra questioned long-standing assumptions; found corruption declines as perpetrators take into account social costs of their illegal activities, and as victims share information about specific bribery exchanges through online reporting systems.

Guilt and shame play a role in reducing bribery, according to research by economist Danila Serra, Southern Methodist University, Dallas.

As an economist who has studied bribery behavior extensively, Serra has discovered that bribery declines if potentially corrupt agents are made aware of the negative effects of corruption, and when victims can share specific information about bribe demands through online reporting systems.

An assistant professor in the SMU Department of Economics, Serra’s research methodology is unique — relying on lab experiments in which players gain and lose real money. Her work is frequently cited by other researchers studying the field of bribery.

In November the directors and officers of the International Foundation for Research in Experimental Economics honored Serra as the inaugural recipient of the $50,000 Vernon L. Smith Ascending Scholar Prize. The Smith Prize is described by the foundation as a “budding genius” award.

“Dr. Serra’s accomplishments have marked her as an ascending scholar, teacher, mentor and colleague of exceptional promise,” said a statement from the foundation.

The prize is named for Nobel Laureate Vernon L. Smith, considered the father of experimental economics. It aims to build on his legacy and inspire recipients, early on in their careers, to set the loftiest possible goals for themselves as social-science theorists, practitioners, colleagues, mentors and truth seekers, the foundation said.

Serra’s interest in understanding bribery transformed in 2005 when she became frustrated by measurement problems and the difficulty of finding good data. Her goal was to identify and understand the causes of corruption, and in particular whether non-monetary motivations, social norms and culture play any role in corruption decision-making. During her Ph.D. work at the University of Oxford, economist Abigail Barr exposed Serra to lab experiments, a relatively new methodology for the field of economics.

“I was always interested in corruption. As soon as I discovered the field of experimental economics I decided to design and implement bribery experiments,” Serra said. “I recreate the situation I want to study in a laboratory setting, employing real monetary incentives, which we provide, and with scenarios where the subjects can make corruption decisions that increase their money at the expense of other players. The play is anonymous and they get to bring home the money they earn in the experimental setting.”

Corruption isn’t purely about money
The focus of Serra’s research sharpened further when she began to question the root assumption that guilt and shame don’t play a role in bribery. She found in laboratory experiments that the intrinsic costs of guilt and shame do matter, and that corruption isn’t purely a matter of money.

She found that corruption declines when potentially corrupt agents are made aware of the negative impact of their actions, and when bottom-up anti-corruption mechanisms are in place, such as victims sharing specific information about bribe demands. Serra also found evidence of a significant relationship between corruption and culture.

“In one of my early studies, I employed a sample of international students at the University of Oxford and found among undergraduate students that the level of corruption in their home country predicts their propensity to engage in corruption in my bribery experiment,” she said.

“This is what we’d expect, they have internalized corrupt norms,” Serra said. “But the surprising result is that this wasn’t true for graduate students. We concluded that graduate students do not conform to the prevailing social norms of their home countries and, possibly, they want to distance themselves from such norms.”

Serra’s research has produced 12 papers on bribery and she has edited a book about experimental research on corruption. Her work on corruption has been cited hundreds of times by other researchers in the field. She has also investigated issues related to governance, public service provision and bottom-up accountability in developing countries. More recently, she has embarked on new research exploring gender differences in behaviors and outcomes in a variety of contexts, including students’ choices of major.

Serra launched and is co-leader of the Laboratory for Research in Experimental Economics at SMU’s Economics Department in the Dedman College of Humanities & Sciences.

The Vernon L. Smith Ascending Prize for Serra is a major professional recognition of the profound impact of her pioneering research in the area of experimental public economics and in particular on the understanding of corruption and other forms of rule breaking, said SMU economist Santanu Roy, chair of the SMU Department of Economics and University Distinguished Professor.

“She is one of the most cited economists of her generation,” Roy said. “The prize comes with a $50,000 award which, as far as I know, is the largest amount awarded as a prize for young economists. The fact that Dr. Serra was chosen to receive the inaugural prize named for the father of experimental economics tells us about the high expectations that her peers have about her future research productivity.”

Economics as an empirical discipline
The Smith Prize seeks to inspire early-career scholars to emulate Smith’s joyous zeal for scientific discovery. It may be used flexibly to advance social science in whatever manner a recipient chooses, the foundation said.

The prize is made possible through the Rasmuson Foundation and other contributors.

As a social scientist, Smith was committed to exploring theoretical foundations in economics, social science, and science generally; achievement in the form of quantifiable impacts in transforming economics into an experimental and more empirical discipline; collegiality in funding, mentoring, and collaborating with fellow scholars; and curiosity in looking beyond traditional disciplinary boundaries in search of truth.

“The International Foundation for Research in Experimental Economics heartily congratulates Dr. Serra and looks forward to following her career in the years to come,” the statement said. — Margaret Allen, SMU

Categories
Earth & Climate Energy & Matter Researcher news SMU In The News

Scientific American: Drilling Reawakens Sleeping Faults in Texas, Leads to Earthquakes

For 300 million years faults showed no activity, and then wastewater injections from oil and gas wells came along. Study authors took a different approach in the new work — they hunted for deformed faults below Texas.

Science journalist Anna Kuchment covered the landmark earthquake research of a team of SMU geophysicists led by SMU Associate Professor Beatrice Magnani in the SMU Department of Earth Sciences. Kuchment wrote Drilling Reawakens Sleeping Faults in Texas, Leads to Earthquakes for Scientific American.

The SMU researchers tapped seismic data to analyze earthquakes in Texas over the past decade.

The results of the analysis showed that human activity is causing the earthquakes as a result of movement in faults that have been silent for at least 300 million years, until recent injection of oil and gas wastewater.

The article by Kuchment, “Drilling Reawakens Sleeping Faults in Texas, Leads to Earthquakes,” published Nov. 24, 2017.

Read the full story.

EXCERPT:

By Anna Kuchment
Scientific American

Since 2008, Texas, Oklahoma, Kansas and a handful of other states have experienced unprecedented surges of earthquakes. Oklahoma’s rate increased from one or two per year to more than 800. Texas has seen a sixfold spike. Most have been small, but Oklahoma has seen several damaging quakes stronger than magnitude 5. While most scientists agree that the surge has been triggered by the injection of wastewater from oil and gas production into deep wells, some have suggested these quakes are natural, arising from faults in the crust that move on their own every so often. Now researchers have traced 450 million years of fault history in the Dallas-Fort Worth area and learned these faults almost never move. “There hasn’t been activity along these faults for 300 million years,” says Beatrice Magnani, a seismologist at Southern Methodist University in Dallas and lead author of a paper describing the research, published today in Science Advances. “Geologically, we usually define these faults as dead.”

Magnani and her colleagues argue that these faults would not have produced the recent earthquakes if not for wastewater injection. Pressure from these injections propagates underground and can disturb weak faults. The work is another piece of evidence implicating drilling in the quakes, yet the Texas government has not officially accepted the link to one of its most lucrative industries.

Magnani and her colleagues studied the Texas faults using images of the subsurface similar to ultrasound scans. Known as seismic reflection data, the images are created by equipment that generates sound waves and records the speeds at which the waves bounce off faults and different rock layers deep within the ground. Faults that have produced earthquakes look like vertical cracks in a brick wall, where one side of the wall has sunk down a few inches so the rows of bricks no longer line up. Scientists know the age of each rock layer—each row of bricks–based on previous studies that have used a variety of dating techniques.

Read the full story.

Categories
Earth & Climate Energy & Matter Fossils & Ruins Researcher news SMU In The News

The Washington Post: Oil and gas industry is causing Texas earthquakes, a ‘landmark’ study suggests

The study authors took a different approach in the new work — they hunted for deformed faults below Texas.

The Washington Post covered the landmark earthquake research of a team of SMU geophysicists led by SMU Associate Professor Beatrice Magnani in the SMU Department of Earth Sciences.

The researchers tapped seismic data to analyze earthquakes in Texas over the past decade.

The results of the analysis showed that human activity is causing the earthquakes as a result of movement in faults that have been silent for at least 300 million years, until recent injection of oil and gas wastewater.

The article by journalist Ben Guarino, “Oil and gas industry is causing Texas earthquakes, a ‘landmark’ study suggests,” published Nov. 24, 2017.

Read the full story.

EXCERPT:

By Ben Guarino
The Washington Post

An unnatural number of earthquakes hit Texas in the past decade, and the region’s seismic activity is increasing. In 2008, two earthquakes stronger than magnitude 3 struck the state. Eight years later, 12 did.

Natural forces trigger most earthquakes. But humans are causing earthquakes, too, with mining and dam construction the most frequent suspects. There has been a recent increase in natural gas extraction — including fracking, or hydraulic fracturing, but other techniques as well — which produces a lot of wastewater. To get rid of it, the water is injected deep into the ground. When wastewater works its way into dormant faults, the thinking goes, the water’s pressure nudges the ancient cracks. Pent-up tectonic stress releases and the ground shakes.

But for any given earthquake, it is virtually impossible to tell whether humans or nature triggered the quake. There are no known characteristics of a quake, not in magnitude nor in the shape of its seismic waves, that provide hints to its origins.

“It’s been a head-scratching period for scientists,” said Maria Beatrice Magnani, who studies earthquakes at Southern Methodist University in Dallas. Along with a team of researchers at the U.S. Geological Survey, Magnani, an author of a new report published Friday in the journal Science Advances, attempted to better identify what has been causing the rash of Texas quakes.

A cluster of earthquakes around a drilling project can, at best, suggest a relationship. “The main approach has been to correlate the location to where there has been human activity,” said Michael Blanpied, a USGS geophysicist and co-author of the new study.

Read the full story.