Level 1 — Absolute Beginner
IBM makes a new computer chip. It is called Nighthawk r2.
This chip is a quantum chip. It uses special parts called qubits, not the normal 1s and 0s in a regular computer.
The new chip resets very fast between jobs. It is like opening a drain to empty a sink quickly, instead of waiting for the water to slowly disappear.
Because it resets so fast, the chip can run many more jobs every second. It is twenty five times faster than IBM's older chips.
- chip
- a small piece of electronics that does computing work
- quantum
- a kind of science and technology that uses very small particles
- qubit
- a quantum bit, the basic unit a quantum computer uses
- reset
- to put something back to its starting state
- circuit
- a set of steps a quantum computer runs to do a task
- drain
- an opening that lets water flow out quickly
- fast
- moving or happening with great speed
- processor
- the part of a computer that does the computing
Level 2 — Elementary
IBM Quantum has announced Nighthawk r2, its fastest quantum chip so far. The chip was released on September 3, 2026.
Nighthawk r2 has 120 qubits arranged in a square pattern. Qubits are the basic building blocks of a quantum computer, similar to how bits are the building blocks of a regular computer.
The chip's biggest improvement is a new way to reset its qubits. After a quantum circuit runs, each qubit normally needs a long pause before it is ready to run again. IBM's new method connects each qubit to a cold environment that can be switched on to quickly drain away extra energy, resetting the qubit almost instantly, much like opening a drain lets water leave a sink quickly instead of slowly disappearing.
Thanks to this faster reset, Nighthawk r2 can run more than 100,000 circuits every second. That is twenty five times faster than IBM's earlier Heron chips, which could run about 4,000 circuits per second.
- square lattice
- a grid pattern where qubits are arranged in rows and columns
- environment
- the surrounding conditions a qubit is connected to
- drain away
- to flow out or disappear gradually or quickly
- instantly
- happening immediately, with almost no delay
- generation
- a version of technology that comes after an earlier version
- milestone
- an important point or achievement in progress toward a goal
- simulation
- a computer model that copies how something behaves in real life
- roadmap
- a plan that shows the steps a company will take over time
Level 3 — Intermediate
IBM Quantum announced on September 3, 2026 the release of Nighthawk r2, the company's fastest quantum processing unit (QPU) to date. Built on a 120-qubit square-lattice architecture, the chip's headline advance is not a larger qubit count but a new dissipative qubit reset framework that removes the long idle periods a quantum chip normally requires between circuit runs.
Each of the 120 programmable qubits is linked, through an adjustable coupler, to a cold environment that can be switched on to rapidly drain excess energy from the qubit, returning it to its resting state. IBM likens the process to opening a drain to quickly empty a sink, rather than waiting for the water to disappear on its own. The company reports that this reset drops a qubit's median effective T1, a measure of how long a quantum state persists, from around 200 microseconds down to roughly 25 nanoseconds during reset, shrinking the idle period between runs to as little as one microsecond.
In total, Nighthawk r2 combines 120 programmable qubits, 218 tunable couplers, and 120 reset elements, for 458 physical quantum elements. Because circuits can be launched again almost immediately after finishing, the chip's overall throughput, the number of circuits it can execute per second, exceeds 100,000, a twenty five fold gain over the roughly 4,000 circuits per second of IBM's earlier Heron fleet.
IBM has already used Nighthawk r2 to demonstrate accurate observable estimation on circuits containing more than 7,500 gates, which the company calls a major 2026 milestone on its quantum computing roadmap, along with a twelve fold speedup in simulations of neutron scattering, a physics technique used to study how materials are structured.
- coupler
- a component that connects two qubits or a qubit to another system so they can interact
- throughput
- the amount of work, such as circuits, that a system can complete in a given time
- coherence
- the length of time a qubit can hold its quantum state before it is disturbed
- dissipative
- describing a process that removes energy from a system, letting it settle to a lower energy state
- microsecond
- one millionth of a second
- nanosecond
- one billionth of a second, much shorter than a microsecond
- architecture
- the overall structure and layout of a chip's components
- observable estimation
- a quantum computing task that measures a specific physical quantity from the outcome of a circuit
Level 4 — Advanced
For much of the past decade, public discussion of quantum computing progress has fixated on a single number: qubit count. IBM's announcement of Nighthawk r2 on September 3, 2026 is a pointed reminder that raw qubit count has never been the only, or even the most practical, constraint on useful quantum computation. The 120-qubit, square-lattice processor's headline contribution is not scale but speed, specifically a new dissipative qubit reset framework aimed squarely at a bottleneck that has quietly limited how much work quantum hardware can actually do: the time a chip must sit idle between one circuit run and the next.
That bottleneck is easy to overlook because it does not show up in a qubit count on a spec sheet. Each of Nighthawk r2's 120 programmable qubits connects, via an adjustable coupler, to a cold environment that can be switched on to rapidly drain residual energy and return the qubit to its resting state, a mechanism IBM compares to opening a drain to empty a sink quickly rather than letting it empty on its own. The effect on a qubit's median effective T1, the characteristic timescale over which a quantum state persists before it decoheres, is dramatic: roughly 200 microseconds in ordinary operation collapses to about 25 nanoseconds during the reset window itself, compressing the wait between circuit executions to as little as one microsecond.
The consequence compounds arithmetically rather than incrementally. With 120 programmable qubits, 218 tunable couplers, and 120 dedicated reset elements, 458 physical elements in all, Nighthawk r2 sustains a circuit throughput exceeding 100,000 circuits per second, a twenty five fold improvement over the roughly 4,000 circuits per second achievable on IBM's prior Heron generation. That is not a marginal engineering refinement; it changes what class of problem is tractable at all, since many of the statistical and error-mitigation techniques that make near-term quantum results trustworthy depend on running enormous numbers of circuit repetitions in a fixed amount of wall-clock time.
IBM has already put that throughput to work, reporting accurate observable estimation on circuits exceeding 7,500 gates, a result the company frames as a significant 2026 waypoint on its quantum roadmap, alongside a twelvefold speedup in simulating neutron scattering, an experimental physics technique used to probe the atomic structure of materials. Neither result required a larger quantum processor than has existed before; both were unlocked by making the existing processor idle less often. The lesson Nighthawk r2 offers the field is that the path toward quantum computers doing genuinely useful work runs not only through adding qubits, but through wringing out the dead time between them.
- decohere
- to lose a quantum state's delicate properties through unwanted interaction with the environment
- residual energy
- leftover energy remaining in a system after an operation has finished
- compound