IBM LOT-403 : IBM Forms 8.0 - Form Design and Development Exam
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Exam Number : LOT-403
Exam Name : IBM Forms 8.0 - Form Design and Development
Vendor Name : IBM
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IBM Forms Dumps
Jordan-sweet retired after a nearly forty-12 months career based mostly at Brookhaven Lab
December 1, 2021
This photograph suggests Jean Jordan-candy with the microbeam setup at beamline X20A at NSLS in 2001.
earlier than her retirement in August, Jean Jordan-sweet become a senior engineer at IBM research and a beamline scientist on the Beamline for substances dimension at national Synchrotron easy supply II (NSLS-II), a U.S. department of energy (DOE) person Facility determined at DOE’s Brookhaven country wide Laboratory. For practically forty years, her work has focused on the usage of x-ray suggestions to study materials and tactics for the advancement of microelectronics applied sciences.
What introduced you to Brookhaven Lab at the beginning of your career?
I first got here to Brookhaven Lab about forty years in the past as a grad student from the tuition of California at los angeles (UCLA) and did some of my thesis experiments here.
Jean Jordan-sweet is longing for proceed working with the country wide Institute of standards and expertise (NIST) at NSLS-II after her departure from IBM in 2021.
My marketing consultant at UCLA, John McTague, had been a collaborator on a venture the usage of x-rays at early synchrotrons to examine adsorbed inert fuel films, which form two dimensional phases. at the moment, the brightness of x-rays wasn’t decent sufficient to examine a single surface the manner they will now, so they needed to make substrates that were in powder form. using a powder meant having a lot of small crystals that collectively had enough surface enviornment to get a signal from the adsorbed movie. My thesis concerned making a excessive-floor-area powder substrate that had a special symmetry. So, I made magnesium oxide (MgO) powder, which has square floor symmetry. I used a rotating anode x-ray supply at Brookhaven to analyze both-dimensional melting of krypton adsorbed on MgO. That supply become owned by means of Dave Moncton, who changed into a collaborator with my consultant. I used that instrument 24/7 for a few weeks to take my thesis statistics.
We additionally collaborated with Larry Passell, who changed into my mentor here at Brookhaven Lab and part of the Condensed be counted Physics department. he is a stupendous man and that i take pleasure in touring him to today. I analyzed all my thesis information along with his support and graduated in 1983. I then received a postdoc with IBM on the ultraviolet (UV) section of the countrywide Synchrotron easy supply (NSLS), the predecessor of NSLS-II. I all started out by using studying polymer/metallic interfaces the usage of UV spectroscopy. From there, it become a natural development to practice for a job to run IBM’s x-ray diffraction beamlines at NSLS. In 1986, i was employed by way of IBM permanently to do just that.
What become your work like in those early years at NSLS?
in the late 80s, industry claimed a huge fraction of NSLS beamlines; there were Exxon, Bell Labs, and Dow/Dupont, as an instance. IBM had about seven beamlines at NSLS, and they all did various things. a couple did x-ray lithography, two were for x-ray diffraction, and there was a suite of beamlines for optics development and ultraviolet spectroscopy.
IBM firstly entered into a accomplice-oriented operational mode at NSLS, exceptionally to be able to manage what form of instrumentation they developed and had entry to. They have been participating with scientists at the Massachusetts Institute of know-how (MIT), the place they did loads of condensed count physics research and IBM did a lot of microelectronics-linked research. back then it changed into noticeably economical to put a beamline collectively. They operated the X20 diffraction beamlines except the conclusion of NSLS.
What scientific questions drove your research?
in the early days of my profession, IBM was a very vertically-built-in enterprise. They did every thing, from making the chips to building the shows and the tough drives. They have been simply starting to make PCs at the moment. So, there have been a lot of distinct substances to look at with x-rays, such because the orientation of the liquid crystals utilized in flat-panel displays, and the part substances that make up microprocessors and storage instruments.
Jean Jordan-sweet (within the again) with three other researchers shown here taking records on the X20C beamline at NSLS. photograph courtesy of Jean Jordan-sweet.
lots of the measurements they took had been aimed toward knowing the habits and characteristics of thin movies or stacks of skinny films. if you happen to make a chip, it’s obtained hundreds of distinct layers. each layer is deposited and processed in keeping with some recipe, no matter if it’s implanted, annealed and/or etched. So, there are many different materials and procedures to analyze. They could use x-rays to do all forms of measurements.
at the moment, IBM is concentrating on very superior computation like synthetic intelligence (AI), neuromorphic computing, and quantum computing, so they enhance very excessive-conclusion hardware. IBM is asking at thoroughly different ways of doing computation, comparable to the usage of memory as a computing equipment for AI. These procedures are extra analog than digital since you are attempting to mimic the synaptic pathways of a brain. these architectures involve an entire distinct set of substances.
Then there is quantum computing. That hardware is completely different and comprises an additional set of substances working at ultra-low temperatures. we've pretty much the entire periodic desk to play with.
How did you develop into drawn to this work?
In high college, I had a fine physics teacher, and he got me thinking about a career in science. Then in school, I double-majored in physics and chemistry. I also did a few national Science foundation summer time classes: One when i was a junior in high school, and the different when i used to be a junior in college. The one throughout school turned into at Argonne countrywide Laboratory. i was taking a tour of Chicago Pile-5, which turned into the closing edition of their nuclear reactor for science analysis. i used to be looking around at the measurement of the gadgets and all the neat stuff; it was like a beehive in there. and i concept, wow, it could be so cool to work at a place like this.
What have you ever been engaged on currently?
earlier than my retirement, I worked on the Beamline for materials Measurements, also known as BMM, which is led by Bruce Ravel, and they signed a CRADA with the country wide Institute of specifications and technology (NIST) to place an x-ray diffraction conclusion station within the downstream end of Bruce’s hutch. IBM gets about one-sixth of the beamtime for experiments, where they do more often than not diffraction and x-ray reflectivity. They also have used the spectroscopy capabilities to aid us discover samples not simply characterized with x-ray diffraction.
BMM is a ravishing supply for us. Bruce has it so neatly programmed; I never should calibrate the energy and it pretty much aligns itself. It’s been a pleasure working there. The source at NSLS-II is so strong, with a continuing beam depth, that it’s a good deal less difficult to do experiments here than at NSLS.
A paper that they posted this yr turned into about trying to take note the crystal structure of skinny hafnium oxide movies which have been doped to become ferroelectric. This material is a candidate for an extra kind of reminiscence — ferroelectric reminiscence — that is being developed for neuromorphic computing. nobody had yet definitively determined the structure of the ferroelectric section. Oxides like these have peaks in every single place on an x-ray diffraction plot and it’s really challenging to pin down what the structure is. At BMM, along with colleagues from IBM, NIST, and Seton hall institution, they used x-ray absorption spectroscopy at NSLS-II and density functional idea modelling to truly pin down the constitution of that ferroelectric section. They nailed it and published a paper in utilized Physics Letters.
What are some highlights of your career?
I feel, for IBM, their most impactful development became the thermal annealing x-ray diffraction system, which is a tremendously specialized chamber installed on a diffractometer. Thermal processing of layers is without doubt one of the most standard steps in chip manufacturing. In their equipment, skinny film or patterned samples on wafer pieces are clamped onto a heater the usage of what's called a four-factor probe, which measures electrical resistance in a movie. X-rays diffract from the movie onto a linear detector whereas the pattern is being directly heated to a preferred temperature. They additionally had a laser that would replicate off the surface and scatter, and the depth of the scattered easy would tell you how tough the floor become on a few length scales. This complete device allowed us to measure temperature and kinetics of section formation or crystallization counting on a huge variety of variables, corresponding to dopants brought, deposition components, substrate used, and many others.
Brookhaven Lab is a household affair for the Sweets, as proven in this photograph of Alan, Jean, Bob, and Marie taken throughout a poster session of Brookhaven's summer time intern program in 2011, whereas they may be keeping a photo taken at the 45th Brookhaven Lab anniversary picnic in 1994. Bob works in the structural biology program at NSLS-II.
We used that method to look at the formation of the little contact pads which are part of the wiring on a computer chip; they're referred to as self-aligned silicides and are formed by means of reacting metal with the underlying semiconducting areas that form the transistor gate, source, and drain. it's crucial that these contacts have very low resistance because you are bringing a low voltage sign in and out. through the years they studied a whole bunch metallic movies on distinct semiconductors, growing an enormous database of what buildings have been formed beneath a lot of situations — 35,000 records runs in total.
all through the last years of NSLS operations, when IBM was the use of nickel silicide as a contact pad, they discovered that their manufacturing yield for a brand new processor chip become bad. a big mass of nickel silicide (NiSi) from time to time formed right within the carrier channel and shorted out the transistors. It become called the “NiSi fang defect” since it became fashioned like a fang. They pinpointed the cause by searching on the geometry of the gadget, referring to their enormous database, and doing some further measurements on their instrument. The problem turned into solved through including a 2d annealing step that transformed some Ni-rich silicide created all the way through an etching step back to NiSi. IBM had been facing a months-lengthy lengthen in the sale of a new technology of servers and warding off that was a large deal.
We bought an IBM research surprising Technical success award for that, which is striking on my wall.
What turned into it like to navigate the conclusion of NSLS and the beginning of NSLS-II?
The gap between NSLS and NSLS-II was complicated. It changed into a loopy time. They did some runs as widespread clients at different synchrotrons. however I had to take aside their historical X20 beamlines, determine who to donate stuff to, clear it up, crate it, and ship it out. It took a yr to get all that accomplished. They shipped out practically 15 a whole lot gadget! And at the moment, appropriate earlier than the NSLS shut down, they additionally had constructed and commissioned an automatic annealing/x-ray diffraction conclusion station that turned into despatched up to the Canadian easy supply. That also needed to be crated and shipped out.
“closing mild” at NSLS changed into complicated. Some managers got here down from IBM, in addition to some of their collaborators, and it become really pleasant that they desired to witness it. i was truly taking a measurement there on the very conclusion. It’s known as a pole figure, which is a way to measure microcrystalline film texture. It took two and a half hours to do this, it was a whole collection of scans. I bear in mind looking at the clock tick down. The experiment accomplished about 30 seconds earlier than they did the closing beam dump.
Did you enjoy your years at the Brookhaven Lab’s gentle sources?
average, very a whole lot so. The workforce is fantastic, my collaborators had been marvelous. I’ve been so impressed over the years with how sensible the americans are who come right here and the fabulous initiatives they work on.
I’ve been very fortunate, as a result of what's the probability of business assisting a person working at a national lab for 37 years? It’s been a very good run! I respect that IBM has identified the value of this analysis and supplied for me to dwell right here for my whole profession.
what's next for you?
I’m hoping that i will still keep my foot in the door. In February, they brought in Vesna Stanic to take my place operating the IBM conclusion station at NSLS-II, and she is very good at that. She has a number of synchrotron event, but she’s nevertheless now not fully frequent with the entire instrumentation that I put together. We’ve simplest carried out three runs together given that she arrived. So, i want to be sure that the transition continues and that i can are available in to support install for users or when there is an gadget upgrade.
In their CRADA renewal, we’re proposing to develop extra distinctive pattern environments. Their diffractometer doesn’t have a big volume where the trial
sits. They wish to strengthen and build some temperature variation capabilities via a heating stage and hopefully a cooling stage. i'm hoping to be concerned in this.
And recently, they now have been developing a translation mechanism in order that they will study combinatorial samples. that you may have a wafer with all styles of adaptations in processing, like gradients from annealing or co-deposition, for example. I installed one linear stage closing year and that i’m inserting in the 2d one now. they are a large assist for far flung access clients. Being in a position to examine combinatorial samples is also an important utility for desktop gaining knowledge of, which is a existing focus of IBM as well as Brookhaven Lab.
in the near time period, I can be an affiliate of NIST, which permits me to work at BMM, only my affiliation has switched to NIST. i am hoping to continue at Brookhaven Lab in this method.
however meanwhile, I have some plans. I took a big family canoeing travel up to the Boundary Waters location at the u.s.a.Canada border in August and may be doing greater commute to visit family unit and pals. I additionally want to make stained glass and different craft-oriented paintings. I even have a friend in Wading River, a physicist recently retired from Brookhaven Lab, who's a brilliant woodworker and has a extremely artistic, inventive imagination. They want to collaborate on some projects. I additionally want to go birding, and my younger sister and i would like to go to Texas to see painted buntings, which is on their bucket lists.
As a U.S. branch of energy workplace of Science user Facility, NSLS-II allows a collaborative, holistic strategy to Boost scientific endeavors via offering free access to incredibly superior gadgets and pleasing potential. To be taught extra about research capabilities and collaborations with NSLS-II personnel, please consult with the NSLS-II site.
Brookhaven countrywide Laboratory is supported by way of the U.S. branch of power’s workplace of Science. The workplace of Science is the only biggest supporter of primary research in the actual sciences in the united states and is working to handle probably the most most pressing challenges of their time. For extra advice, seek advice from https://energy.gov/science.
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