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  • Thomas Jefferson National Accelerator Facility (Jefferson Lab) provides scientists worldwide the lab’s unique particle accelerator, known as the Continuous Electron Beam Accelerator Facility (CEBAF), to probe the most basic building blocks of matter by conducting research at the frontiers of nuclear physics (NP) and related disciplines. In addition, the lab capitalizes on its unique technologies and expertise to perform advanced computing and applied research with industry and university partners, and provides programs designed to help educate the next generation in science and technology.

    Majority of computational science activities in Jefferson Lab focus on these areas : large scale and numerical intensive Lattice Quantum Chromodynamics (LQCD) calculations, modeling and simulation of accelerators and the experiment detectors, fast data acquisition and streaming data readout, high throughput computing for data analysis of experimental data, and large scale distributed data storage and management.

    Many Jefferson Lab scientists and staffs lead or actively participate the computational efforts in the above areas. Among those are computer/computational scientists and computer professionals from newly formed computational sciences and technology division (CST), physicists from physics division and the Center for Theoretical and Computational Physics, and accelerator physicists from Center for Advanced Studies of Accelerators (CASA). In addition, collaborations with universities and industrial partners further research and development in computational science.

    Jefferson Lab maintains various state of art high performance computing resources onsite. CSGF students will utilize these resources to carried out their researches in the specific areas described below:

    Accelerator Modeling

    CASA and Jefferson Lab SRF institute focus on advanced algorithms, such as fast multipole methods, for multiparticle accelerator dynamics simulations, artificial intelligence (AI) and machine learning (ML) applied to superconducting RF (SRF) accelerator operations, and integrated large and multi-scale modeling of SRF accelerator structures. These areas will be an essential part of a national strategy to optimize DOE operational facility investments, and to strengthen Jefferson Lab’s core competency of world-leading SRF advanced design and facility operations. Especially, current active simulation projects

    like electron cooling, intra-beam scattering, and coherent synchrotron radiation present diverse research domains ranging from numerical algorithms development to parallel computing.

    Streaming Data Readout

    With tremendous advancement in micro-electronics and computing technologies in the last decade, many nuclear physics and high-energy physics experiments are taking advantage of these developments by upgrading their existing triggered data acquisition to a streaming readout model (SRO) , whereby detectors are continuously read out in parallel streams of data. An SRO system, which could handle up to 100 Gb/s data throughput, provides a pipelined data analysis model to nuclear physics experiments where data are analyzed and processed in near real-time fashion. Jefferson Lab is leading a collaborative research and development effort to devise SRO systems not only for CEBAF 12GeV experiments but also for the upcoming EIC facility. SRO development offers CSGF students some exciting research areas such as network protocol design, high speed data communication, high performance data compression and distributed computing.

    Physics Data Analysis

    Analysis of data from modern particle physics experiments uses technically advanced programming and computing techniques to handle the large volumes of data. One not only needs to understand aspects of parallel programming using modern languages such as C/C++, Java, and Python, but also must incorporate knowledge of experimental techniques involving error propagation and estimation in order to properly interpret the results. Aspects of this range from writing a single algorithm used in event reconstruction, to using the collection of algorithms written by others, to managing campaigns at HPC facilities that apply these algorithms to large datasets. Detector calibrations and final physics analysis are also significant parts of the analysis chain. CSGF students could participate in any of these areas.

    Machine Learning

    Rapid developments in hardware computational power and an ever increasing set of data has lead to explosive growth in machine learning techniques, specifically deep learning techniques. These techniques threaten to change just about every facet of modern life and nuclear physics is no exception. At Jefferson Lab machine learning is being developed for every step in the physics workflow. To deliver beam to the experimental halls the accelerator relies on radio frequency (RF) cavities to accelerate the electrons. Occasionally these cavities, of which there are over 400 in operation around the accelerator, fault which disrupts the delivery of the beam to experiments. To quickly identify and diagnose cavity faults A.I. is being developed and deployed. Experiments themselves are developing and/or deploying A.I. to monitor detector performance, decide what data to keep, reconstruct detector responses, simulate the detectors, and even to analyze collected data. With the active development of machine learning tools and techniques Jefferson Lab hopes to drive nuclear physics research forward, enabling physicists to more quickly obtain and analyze high quality data.

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      Contrary to popular belief, Lorem Ipsum is not simply random text. It has roots in a piece of classical Latin literature from 45 BC, making it over 2000 years old. Richard McClintock, a Latin professor at Hampden-Sydney College in Virginia, looked up one of the more obscure Latin words, consectetur, from a Lorem Ipsum passage, and going through the cites of the word in classical literature, discovered the undoubtable source. Lorem Ipsum comes from sections 1.10.32 and 1.10.33 of "de Finibus Bonorum et Malorum" (The Extremes of Good and Evil) by Cicero, written in 45 BC. This book is a treatise on the theory of ethics, very popular during the Renaissance. The first line of Lorem Ipsum, "Lorem ipsum dolor sit amet..", comes from a line in section 1.10.32.
      Contrary to popular belief, Lorem Ipsum is not simply random text. It has roots in a piece of classical Latin literature from 45 BC, making it over 2000 years old. Richard McClintock, a Latin professor at Hampden-Sydney College in Virginia, looked up one of the more obscure Latin words, consectetur, from a Lorem Ipsum passage, and going through the cites of the word in classical literature, discovered the undoubtable source. Lorem Ipsum comes from sections 1.10.32 and 1.10.33 of "de Finibus Bonorum et Malorum" (The Extremes of Good and Evil) by Cicero, written in 45 BC. This book is a treatise on the theory of ethics, very popular during the Renaissance. The first line of Lorem Ipsum, "Lorem ipsum dolor sit amet..", comes from a line in section 1.10.32.
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    1. Start typing the title of a piece of content to select it.
    2. Contrary to popular belief, Lorem Ipsum is not simply random text. It has roots in a piece of classical Latin literature from 45 BC, making it over 2000 years old. Richard McClintock, a Latin professor at Hampden-Sydney College in Virginia, looked up one of the more obscure Latin words, consectetur, from a Lorem Ipsum passage, and going through the cites of the word in classical literature, discovered the undoubtable source. Lorem Ipsum comes from sections 1.10.32 and 1.10.33 of "de Finibus Bonorum et Malorum" (The Extremes of Good and Evil) by Cicero, written in 45 BC. This book is a treatise on the theory of ethics, very popular during the Renaissance. The first line of Lorem Ipsum, "Lorem ipsum dolor sit amet..", comes from a line in section 1.10.32.
      Contrary to popular belief, Lorem Ipsum is not simply random text. It has roots in a piece of classical Latin literature from 45 BC, making it over 2000 years old. Richard McClintock, a Latin professor at Hampden-Sydney College in Virginia, looked up one of the more obscure Latin words, consectetur, from a Lorem Ipsum passage, and going through the cites of the word in classical literature, discovered the undoubtable source. Lorem Ipsum comes from sections 1.10.32 and 1.10.33 of "de Finibus Bonorum et Malorum" (The Extremes of Good and Evil) by Cicero, written in 45 BC. This book is a treatise on the theory of ethics, very popular during the Renaissance. The first line of Lorem Ipsum, "Lorem ipsum dolor sit amet..", comes from a line in section 1.10.32.
      Contrary to popular belief, Lorem Ipsum is not simply random text. It has roots in a piece of classical Latin literature from 45 BC, making it over 2000 years old. Richard McClintock, a Latin professor at Hampden-Sydney College in Virginia, looked up one of the more obscure Latin words, consectetur, from a Lorem Ipsum passage, and going through the cites of the word in classical literature, discovered the undoubtable source. Lorem Ipsum comes from sections 1.10.32 and 1.10.33 of "de Finibus Bonorum et Malorum" (The Extremes of Good and Evil) by Cicero, written in 45 BC. This book is a treatise on the theory of ethics, very popular during the Renaissance. The first line of Lorem Ipsum, "Lorem ipsum dolor sit amet..", comes from a line in section 1.10.32.
    3. You can also enter an internal path such as /node/add or an external URL
    • Start typing the title of a piece of content to select it.
    • You can also enter an internal path such as /node/add or an external URL
    1. Start typing the title of a piece of content to select it.
    2. You can also enter an internal path such as /node/add or an external URL
  • Computational Sciences and Technology (CST) Division

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  • Creative Energy. Supercharged with Science.

    Accelerate your career with a new role at the nation's newest national laboratory. Here you can be part of a team exploring the building blocks of matter and lay the ground work for scientific discoveries that will reshape our understanding of the atomic nucleus. Join a community with a common purpose of solving the most challenging scientific and engineering problems of our time.

     

    Title Job ID Category Date Posted
    High Throughput Computing (HTC) Hardware Engineer 13197 Computer
    DC Power Systems Electrical Engineer 13371 Engineering
    Fusion Project Technician 13389 Misc./Trades
    Vacuum Engineer 13396 Engineering
    Deputy CNI Manager 13378 Computer
    CIS Postdoctoral Fellow 13102 Science
    Hall A Technologist/Design Drafter 13285 Engineering
    Scientific Data and Computing Department Head 13383 Computer
    DC Power Group Leader 13380 Engineering
    Accelerator Operator 13403 Technology
    Science Education Administrator 13402 Clerical/Admin
    Geant4 Developer 13214 Computer
    Magnet Group Mechanical/Electrical Designer 13388 Misc./Trades
    Administrative Assistant - Electron Ion Collider Project 13375 Clerical/Admin
    Data Center Operations Manager 13327 Engineering
    Lead Magnet Engineer 13366 Engineering
    Communications Office Student Intern 13310 Public Relations
    Mechanical Engineer III 13140 Engineering
    ES&H Department Head 13338 Engineering
    Project Services and Support Office Manager 13330 Management
    MIS Application Server Administrator 13394 Computer
    Storage Solutions Architect 13238 Computer
    SRF Accelerator Physicist 13359 Science
    Master HVAC Technician 13367 Misc./Trades
    Sustainability Engineer (Electrical) 13364 Engineering
    MPGD Development Physicist 13381 Science
    Project Controls Analyst 13302 Clerical/Admin
    Magnet Group Staff Engineer 13370 Engineering
    Multimedia Intern 13215 Public Relations
    RadCon Manager 13337 Environmental Safety
    Radiation Control Technician 13391 Technology
    HPDF Project Director 13373 Computer
    Network Engineer I 13345 Computer
    IT Project Manager 13340 Clerical/Admin
    Survey & Alignment Technician (Metrology) 13385 Misc./Trades

    A career at Jefferson Lab is more than a job. You will be part of “big science” and work alongside top scientists and engineers from around the world unlocking the secrets of our visible universe. Managed by Jefferson Science Associates, LLC; Thomas Jefferson National Accelerator Facility is entering an exciting period of mission growth and is seeking new team members ready to apply their skills and passion to have an impact. You could call it work, or you could call it a mission. We call it a challenge. We do things that will change the world.

    Welcome from Stuart Henderson, Lab Director
    Why choose Jefferson Lab
    • PASSION AND PURPOSE
      Middle School Science Bowl competitors huddle together to brainstorm the answer.
    • PASSION AND PURPOSE
      Local teachers share ideas for a classroom activity with other teachers during Teacher Night.
    • PASSION AND PURPOSE
      Two young learners hold up a model of the atom during Deaf Science Camp.
    • PASSION AND PURPOSE
      Staff Scientist Douglas Higinbotham snaps a selfie with some of the postdoc students he is mentoring.

    At Jefferson Lab we believe in giving back to our community and encouraging the next generation of scientists and engineers. Our staff reaches out to students to advance awareness and appreciation of the range of research carried out within the DOE national laboratory system, to increase interest in STEM careers for women and minorities, and to encourage everyone to become a part of the next-generation STEM workforce. We are recognized for our innovative programs like:

    • 1,500 students from 15 Title I schools engage in the Becoming Enthusiastic About Math and Science (BEAMS) program at the lab each school year.

    • 60 teachers are enrolled in the Jefferson Science Associates Activities for Teachers (JSAT) program at the lab inspiring 9,000 students annually.

    • 24 high school students have internships and 34 college students have mentorships at the lab.

       

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    Meet our people
    • Thomas Britton, Postdoctoral Fellow

      Using Computers to Demystify Science and Enable More Efficient Research

      Thomas Britton has loved computers since he was first introduced to them in kindergarten. His voluminous resume reflects his passion for developing robust systems and complex and integrated software solutions. Britton is also multilingual, when it comes to computers. He’s conversant in ten different computer programming languages: C, C++, Python, Bash, Shell, HTML, JavaScript, PHP, CSS, MySQL. 

      While it may be tempting to identify Britton as a computer scientist, he is actually a physicist who is currently working on the Gluonic Excitations Experiment in Jefferson Lab’s Experimental Hall D as a postdoctoral fellow. In fact, his degrees from Coe College are in physics and mathematics; computer science was just his minor.

      It is not until one reviews his dissertation from the Syracuse University physics Ph.D. program that it is possible to see hints of his computer science interest; his dissertation was on the Amplitude Analysis of B→J/ψφK (the analysis is where the computer science comes in).

       

      Computers Leading to Faster, More Efficient Scientific Analysis

      According to Britton, technology is making it possible for physicists to more efficiently analyze mind-boggling amounts of data. “People are notoriously bad at looking at reams of numbers in an efficient way,” he said. “With the GlueX experiment, we take about one gigabyte of data every two seconds. We really have to rely on more automated systems.”

      For GlueX, Britton created an automated system called MCWrapper, which he describes as the “definitive framework for GlueX Monte Carlo simulations.” Physicists use Monte Carlo simulations to make predictions. Monte Carlo may be used to predict what particles will be produced in an experiment or may be used to model how a real detector system functions in different scenarios.

      Britton’s MCWrapper system allows researchers to carry out Monte Carlo simulations on any number of different computer systems without the need to customize the configuration for each different system. It’s a kind of plug-and-play Monte Carlo simulator that is pre-configured for all things GlueX. In short, Britton’s technology essentially manages, runs and tracks the production of simulations for the entire experiment.

      To make it easier, he created an automated system that takes requests from an online application and handles the processing (mainly on the Open Science Grid).  This enables researchers to better utilize available computation resources with ease.

      In fact, it was the GlueX experiment that brought Britton to the lab. As he was wrapping up his Ph.D. program, Britton was looking for positions that would enable him to be integral to an experiment’s success by getting involved during the nascent stages and helping to develop technologies specific to the experiment. “I wanted to glom onto projects and have a material impact,” he says. “I felt that because GlueX was on the ground floor, some of my skills could increase efficiency and make scientists’  lives easier.”

       

      Sharing Systems in Pursuit of Science

      Part of Britton’s motivation for developing technology solutions is that he values the contribution he can make to a team. “My driving force is building the tools and systems that not only make my research easier to do, but that also help others,” he said.

      As he develops his interfaces, he keeps his users’ experiences in mind. Most of Britton’s users are other physicists, he says.

      “A lot of my projects come about because I think, ‘Boy, this could be done a lot better if we had these technologies,’” he explains. “I can produce a product that’s better than the predecessor because it’s built on something newer and it solves a wider array of problems. And instead of building something to get just my project done, I can build something for everybody and make a system that’s easier for everyone.”

      Britton is also motivated by his love of teaching and sharing his passion for physics. For example, he explains that the learning curve for a new graduate student to understand some technical concepts can take a year or more to overcome. Yet, when they use one of Britton’s tools, “They can get going sooner, because there’s a nice interface to things, turning that trek through the jungle more like a drive down a dirt road.”

      It’s not just scientists who benefit from Britton’s tools; Britton designed a user experience for the lab’s most recent biennial open house, which welcomed 6,000 visitors who were interested in learning more about the groundbreaking research happening inside. During Britton’s demonstration, guests donned virtual reality goggles and were taken on a ride aboard a rendition of a subatomic particle as it traveled through the detectors in Hall D. Britton volunteered at the event to ensure that the technology ran smoothly throughout the day.

       

      Technology Requests on Sticky Notes

      He keeps himself busy with developing applications and technologies as well as his own research; with all the feature requests his fellow researchers have made, he still jokes that he should invite his colleagues to leave sticky notes on his door with requests so that when he feels like taking on a new project, he can simply go to his door and pick one.

      Regardless of whether his project is for his personal research or for his team, he has one guiding principal: “Everything I’ve done is towards producing better, more accurate physics.”

      Outside of work, he spends time with his young son, Declan. In fact, the story of his family coincides with his time with GlueX. 

      “I interviewed for the position 8 a.m. on the morning after getting home from the hospital with Declan.  We moved to Newport News when he was six weeks old, and he attended the first collaboration meeting in a baby carrier. The last one he was at he was running around.”

      When he finds the time, he also enjoys playing games, both video and board; his son now joins in by helping roll dice.

      By Carrie Rogers

    Youtube videos

    The Jefferson Lab campus is located in southeastern Virginia amidst a vibrant and growing technology community with deep historical roots that date back to the founding of our nation. Staff members can live on or near the waterways of the Chesapeake Bay region or find peace in the deeply wooded coastal plain. You will have easy access to nearby beaches, mountains, and all major metropolitan centers along the United States east coast.

    To learn more about the region and its museums, wineries, parks, zoos and more, visit the Virginia tourism page, Virginia is for Lovers

    To learn more about life at Jefferson Lab, click here.

     

    We support our inventors! The lab provides resources to employees for the development of patented technology -- with over 180 awarded to date! Those looking to obtain patent coverage for their newly developed technologies and inventions while working at the lab are supported and mentored by technology experts, from its discovery to its applied commercialization, including opportunities for monetary awards and royalty sharing. Learn more about our patents and technologies here.

    • Welding Program Manager
      Jenord Alston
      Welding Program Manager

      "Everybody in the chain is working towards the same goal: to ensure that everything is built safe and to the code specifications"

    • Kim Edwards
      Kim Edwards
      IT Division/Information Resource

      "When I’m 95 years old, I hope I will be one of those people who worked in the background to affect other people’s lives for the better."

    • Ashley Mitchell
      Ashley Mitchell
      SRF Chemistry Technician

      “Chemistry is the art of science and art; you’re manipulating and creating things. We have lots of different recipes to work with.”

    • Ron Lassiter
      Ron Lassiter
      Mechanical Designer

      “Here at the lab you get to see what you’ve worked on. You can hold it in your hands. It’s rewarding to know that you’ve played a part in helping the machine to be successful.”

    • Jianwei Qiu
      Jianwei Qiu
      Associate Director For Theoretical And Computational Physics

      "My own research enables me to better lead the Theory Center, to lead our collaboration, to provide good guidance to our junior researchers on the team, and to provide valuable input to the advisory and review committees that I serve"

    Jefferson Science Associates, LLC manages and operates the Thomas Jefferson National Accelerator Facility. Jefferson Science Associates/Jefferson Lab is an Equal Opportunity and Affirmative Action Employer and does not discriminate in hiring or employment on the basis of race, color, religion, ethnicity, sex, sexual orientation, gender identity, national origin, ancestry, age, disability, or veteran status or on any other basis prohibited by federal, state, or local law.

    If you need a reasonable accommodation for any part of the employment process, please send an e-mail to recruiting @jlab.org or call (757) 269-7100 between 8 am – 5 pm EST to provide the nature of your request.

    "Proud V3-Certified Company"

    A Proud V3-Certified Company
    JSA/Jefferson Lab values the skills, experience and expertise veterans can offer due to the myriad of experiences, skill sets and knowledge service members achieve during their years of service. The organization is committed to recruiting, hiring, training and retaining veterans, and its ongoing efforts has earned JSA/Jefferson Lab the Virginia Values Veterans (V3) certification, awarded by the Commonwealth of Virginia.

  • Contrary to popular belief, Lorem Ipsum is not simply random text. It has roots in a piece of classical Latin literature from 45 BC, making it over 2000 years old. Richard McClintock, a Latin professor at Hampden-Sydney College in Virginia, looked up one of the more obscure Latin words, consectetur, from a Lorem Ipsum passage, and going through the cites of the word in classical literature, discovered the undoubtable source. Lorem Ipsum comes from sections 1.10.32 and 1.10.33 of "de Finibus Bonorum et Malorum" (The Extremes of Good and Evil) by Cicero, written in 45 BC. This book is a treatise on the theory of ethics, very popular during the Renaissance. The first line of Lorem Ipsum, "Lorem ipsum dolor sit amet..", comes from a line in section 1.10.32.

    Contrary to popular belief, Lorem Ipsum is not simply random text. It has roots in a piece of classical Latin literature from 45 BC, making it over 2000 years old. Richard McClintock, a Latin professor at Hampden-Sydney College in Virginia, looked up one of the more obscure Latin words, consectetur, from a Lorem Ipsum passage, and going through the cites of the word in classical literature, discovered the undoubtable source. Lorem Ipsum comes from sections 1.10.32 and 1.10.33 of "de Finibus Bonorum et Malorum" (The Extremes of Good and Evil) by Cicero, written in 45 BC. This book is a treatise on the theory of ethics, very popular during the Renaissance. The first line of Lorem Ipsum, "Lorem ipsum dolor sit amet..", comes from a line in section 1.10.32.

    Contrary to popular belief, Lorem Ipsum is not simply random text. It has roots in a piece of classical Latin literature from 45 BC, making it over 2000 years old. Richard McClintock, a Latin professor at Hampden-Sydney College in Virginia, looked up one of the more obscure Latin words, consectetur, from a Lorem Ipsum passage, and going through the cites of the word in classical literature, discovered the undoubtable source. Lorem Ipsum comes from sections 1.10.32 and 1.10.33 of "de Finibus Bonorum et Malorum" (The Extremes of Good and Evil) by Cicero, written in 45 BC. This book is a treatise on the theory of ethics, very popular during the Renaissance. The first line of Lorem Ipsum, "Lorem ipsum dolor sit amet..", comes from a line in section 1.10.32.

    Contrary to popular belief, Lorem Ipsum is not simply random text. It has roots in a piece of classical Latin literature from 45 BC, making it over 2000 years old. Richard McClintock, a Latin professor at Hampden-Sydney College in Virginia, looked up one of the more obscure Latin words, consectetur, from a Lorem Ipsum passage, and going through the cites of the word in classical literature, discovered the undoubtable source. Lorem Ipsum comes from sections 1.10.32 and 1.10.33 of "de Finibus Bonorum et Malorum" (The Extremes of Good and Evil) by Cicero, written in 45 BC. This book is a treatise on the theory of ethics, very popular during the Renaissance. The first line of Lorem Ipsum, "Lorem ipsum dolor sit amet..", comes from a line in section 1.10.32.

    Contrary to popular belief, Lorem Ipsum is not simply random text. It has roots in a piece of classical Latin literature from 45 BC, making it over 2000 years old. Richard McClintock, a Latin professor at Hampden-Sydney College in Virginia, looked up one of the more obscure Latin words, consectetur, from a Lorem Ipsum passage, and going through the cites of the word in classical literature, discovered the undoubtable source. Lorem Ipsum comes from sections 1.10.32 and 1.10.33 of "de Finibus Bonorum et Malorum" (The Extremes of Good and Evil) by Cicero, written in 45 BC. This book is a treatise on the theory of ethics, very popular during the Renaissance. The first line of Lorem Ipsum, "Lorem ipsum dolor sit amet..", comes from a line in section 1.10.32.

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    Contrary to popular belief, Lorem Ipsum is not simply random text. It has roots in a piece of classical Latin literature from 45 BC, making it over 2000 years old. Richard McClintock,

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    • Femtocenter.org website: maintenance and updates to standalone website. This includes added costs for security and platform updates. Work is verified by the webmaster and processed directly through JSA to the lab’s Drupal CMS contractor.  
    • HPDF website: maintenance and updates to standalone website. This includes added costs for security and platform updates. Work is verified by the webmaster and processed directly through HPDF to the lab’s Drupal CMS contractor

    Web server support. Work with the CST division to maintain, update and upgrade existing file servers that interact with the lab’s websites. Submit Service Now tickets and follow up on them when web servers need upgrades or