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Software for quantum compu­ting hardware

Software for quantum compu­ting hardware forms the stack between high-level algorithms and physi­cal qubits. At the top, compi­lers and trans­pi­lers decom­pose abstract circuits into native gates and map them onto devices with limited connec­ti­vity and gate sets. Schedu­lers and runtime systems orchest­rate gate timing, measu­re­ment, and classi­cal feedback under strict latency constraints. Closer to the hardware, calibra­tion and control software generate precis­ely shaped micro­wave or laser pulses, track drifting parame­ters, and automate charac­te­riza­tion routi­nes. Low-level firmware integra­tes these compon­ents with cryoge­nic electro­nics and classi­cal compute resour­ces. This software stack is essen­tial to turn fragile quantum chips into relia­ble accele­ra­tors that can be acces­sed via cloud platforms and integra­ted into existing workflows.

 

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