Of Particular Significance

Blog – Of Particular Significance

In the field of particle physics, the word “workshop” has a rather broad usage; some workshops are just conferences with a little bit of time for discussion or some other additional feature.  But some workshops are about WORK…. typically morning-til-night work.  This includes the one I just attended at the Perimeter Institute (PI) in Waterloo, Canada, which brought particle experimentalists from the CMS experiment (one of the two general-purpose experiments at the Large Hadron Collider [LHC] — the other being ATLAS) together with some particle theorists like myself.  In fact, it was one of the most productive workshops I’ve ever participated in.

The workshop was organized by the PI’s young theoretical particle physics professors, Philip Schuster and Natalia Toro, along with CMS’s current spokesman Joseph Incandela and physics coordinator Greg Landsberg. (Incandela, professor at the University of California at Santa Barbara, is now famous for giving CMS’s talk July 4th announcing the observation of a Higgs-like particle; ATLAS’s talk was given by Fabiola Gianotti. Landsberg is a senior professor at Brown University.) Other participants included many of the current “conveners” from CMS — typically very experienced and skilled people who’ve been selected to help supervise segments of the research program — and a couple of dozen LHC theorists, mostly under the age of 40, who are experienced in communicating with LHC experimenters about their measurements.  (more…)

Picture of POSTED BY Matt Strassler

POSTED BY Matt Strassler

ON August 7, 2012

Today finds me in Canada, at the Perimeter Institute in Waterloo, Ontario, where I’ll be for the next few days.  I’m attending a workshop on strategies for searching for new phenomena at the Large Hadron Collider (LHC), which is bringing together a couple of dozen theorists like myself with experimentalists in leadership positions at the CMS experiment, one of the experiments at the LHC.  More on that later, though I won’t be at liberty to discuss details.

Meanwhile, yesterday ATLAS and CMS, the two general purpose experiments at the LHC,  released their pre-publication papers that summarize their observation of a new Higgs-like particle.   (Here’s ATLAS’s and here’s CMS’s paper; they’ve been submitted now to the journal Physics Letters, which normally doesn’t publish tomes.) (more…)

Picture of POSTED BY Matt Strassler

POSTED BY Matt Strassler

ON August 2, 2012

The intensity of the last few weeks has been almost beyond description, and certainly unmatched in my career as a theoretical physicist.  For me, and for many of my colleagues, the end of a decades-long hunt for the Higgs particle comes with a sense almost of disbelief.  Did this really just happen?  Did the years and years of anticipation, which had become almost a part of our communal culture, a sort of Waiting For Godot, a hope for a Promised Land always out of reach, actually come to an end?

Click here to read the full article.

Picture of POSTED BY Matt Strassler

POSTED BY Matt Strassler

ON August 1, 2012

Professor Richard Muller of UC Berkeley isn’t the first scientist to be converted to the idea that humans are causing a change in the climate through carbon dioxide emissions.  Nor is he, by a long shot, the most expert among them.  But he’s one of the most famous, now, because he was also a loud skeptic not long in the past. He’s described the reasons for his conversion, based on a scientific study that he organized and helped lead, in a recent op-ed post in the New York Times.  It’s a little self-serving at best, but makes for interesting reading. (more…)

Picture of POSTED BY Matt Strassler

POSTED BY Matt Strassler

ON July 31, 2012

Yesterday’s Quiz Question: when was the first Higgs particle produced by humans? (where admittedly “Higgs” should have read “Higgs-like”) got many answers, but not the one I think is correct. Here’s what I believe is the answer.

——

[UPDATE: After this post was written, but before it went live, commenter bobathon got the right answer — at 6:30 Eastern, just under the wire! Well done!]

The first human-produced Higgs particle [more precisely, the Higgs-like particle with a mass of about 125 GeV/c2 whose discovery was reported earlier this month, and which I’ll refer to as “`H”– but I’ve told you why I think it is a Higgs of some sort] was almost certainly created in the United States, at the Fermilab National Accelerator Center outside Chicago. Back in 1988 and 1989, Fermilab’s accelerator called the Tevatron created collisions within the then-new CDF experiment, during the often forgotten but very important “Run Zero”.  The energy per collision, and the total data collected, were just enough to make it nearly certain that an H particle was created during this run.

Run Zero, though short, was important because it allowed CDF to prove that precision mass measurements were possible at a proton collider.  They made a measurement of the Z particle’s mass that almost rivaled the one made simultaneously at the SLC electron-positron collider.  This surprised nearly everyone. [Unfortunately I was out of town and missed the scene of disbelief, back in 1989, when CDF dropped this bombshell during a conference at SLAC, the SLC’s host laboratory.] Nowadays we take it for granted that the best measurement of the W particle’s mass comes from the Tevatron experiments, and that the Large Hadron Collider [LHC] experiments will measure the H particle’s mass to better than half a percent — but up until Run Zero it was widely assumed to be impossible to make measurements of such quality in the messy environment of collisions that involve protons.

Anyway, it is truly astonishing that we have to go back to 1988-1989 for the first artificially produced Higgs(-like) particle!! I was a first-year graduate student, and had just learned what Higgs particles were; precision measurements of the Z particle were just getting started, and the top quark hadn’t been found yet. It took 23 years to make enough of these Higgs(-like) particles to convince ourselves that they were there, using the power of the CERN laboratory’s Large Hadron Collider [LHC]!

[Perhaps this remarkable history will help you understand why I keep saying that although the LHC experiments haven’t yet found something unexpected in their data, that absolutely doesn’t mean that nothing unexpected is there. What’s new just may be hard to see, waiting to be noticed with more sophisticated methods and/or more data.] (more…)

Picture of POSTED BY Matt Strassler

POSTED BY Matt Strassler

ON July 27, 2012

Ok, testing you to see if you’re on your toes: when was the first Higgs particle produced by humans?  We can’t know the exact date, but make your best estimate. 🙂

[Hint: how many Higgs particles will be produced at the Large Hadron Collider in 2012?]

Picture of POSTED BY Matt Strassler

POSTED BY Matt Strassler

ON July 26, 2012

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